Dr Christos Anastopoulos
School of Mathematical and Physical Sciences
Senior Lecturer in Particle Physics and Particle Astrophysics
Full contact details
School of Mathematical and Physical Sciences
F42
Hicks Building
Hounsfield Road
Sheffield
S3 7RH
- Profile
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My research focuses on the understanding of fundamental particles and forces of nature, in particular the origin of mass.
I am a member of the ATLAS collaboration where I played a crucial role in the analysis that led to the discovery of the Higgs boson at the LHC, for which The Nobel Prize in Physics 2013 was awarded.
I have been previously supported by a Royal Society Research Fellowship (2015-2023) and an Early Career Leverhulme Fellowship (2013-2015).
- Research interests
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My primary research interests are on experimental particle physics as a member of the ATLAS collaboration. ATLAS is a multi-purpose detector operating at the Large Hadron Collider at CERN in Europe.
It has been designed to search for signals that will enable physicists to understand the fundamental laws of nature and in particular the acquisition of mass through the so-called Higgs mechanism.
Thus, data from the ATLAS experiment are probing the basic forces that have shaped our Universe since the beginning of time and that will eventually determine its fate.
I made substantial contributions to the direct discovery of the Higgs boson announced in July 2012 by the ATLAS and CMS collaborations.
This discovery led to the award of the 2013 Nobel Prize to Peter Higgs and Fran癟ois Englert for the theoretical discovery of a mechanism that contributes to our understanding of the origin of mass of subatomic particles.
Over time I have also worked on the reconstruction of electrons in ATLAS by combining the information from the ATLAS tracker and electromagnetic calorimeter. This constituted the ground-work for the discovery of the Higgs boson via its decays to four leptons which I was involved in.
The discovery of the Higgs boson opens the way to a new phase of particle physics in which the study of its properties will allow an examination of the nature of the Higgs in detail and perhaps will also provide the means for new discoveries.
We know that the particle we have discovered is a brand new boson. Even though it fulfils the basic requirements of a Higgs boson, it is not clear that its properties correspond exactly to those predicted for the Higgs boson by the standard model of particle physics, which is currently the best theory we have for describing the fundamental particles and their interactions.
The ongoing LHC RUN II is expected to produce four times more Higgs boson candidates that will allow us to further study the new particle properties.
The most promising way to study the properties of the Higgs boson is via its decays to into two Z bosons which in turn each decay into an oppositely charged pair of electrons or muons, as they have the lower level of background noise.
In the standard model the Higgs and its associated field are predicted to have a spin of 0. This means that, unlike electomagnetism, they lack directionality. Further Higgs production will allow us to confirm this hypothesis.
A more powerful LHC could also reveal whether the Higgs has siblings. For example one popular way to extend the standard model is a theory called supersymmetry, which specifies a minimum of five types of Higgs boson.
Another open question is the determination of the rate with which the Higgs boson is produced via different mechanisms, and its comparison with the standard model predictions.
We currently stand at the cross roads of either achieving a more thorough understanding of the SM Higgs mechanism, or the perhaps more exciting prospect of discovering new physics phenomena, and is to this questions that my research will be addressed.
As such it will have a profound and lasting impact on our understanding of the fundamental nature of matter and expand humanitys understanding of the fundamental laws of nature.
Higgs 4 lepton
The Sheffield High Energy Physics group is an active participant in the ATLAS experiment, one of the general purpose detectors being built to exploit the exciting physics potential of the Large Hadron Collider (LHC) at CERN. ATLAS has been designed to search for signals that will enable physicists to understand the fundamental laws of nature and in particular the acquisition of mass through the so-called Higgs mechanism.
Thus, data from the ATLAS experiment are probing the basic forces that have shaped our Universe since the beginning of time and that will eventually determine its fate.
I played a leading role in direct discovery of the Higgs boson announced in July 2012 by the ATLAS and CMS collaborations.
This discovery led to the award of the 2013 Nobel Prize to Peter Higgs and Fran癟ois Englert for the theoretical discovery of a mechanism that contributes to our understanding of the origin of mass of subatomic particles.
The main interest of the group is the study of the properties of the Higgs boson via its decays into two Z bosons which in turn each decay into an oppositely charged pair of electrons or muons. These decays are so-called the "golden" channel as they have the lower level of background noise.
Electron Reconstruction
The remarkable discovery of the Higgs boson in the experimentally harsh LHC environment would not have been possible without the deep understanding of the detector performance and optimisation of the reconstruction and identification algorithms.
An electron is reconstructed using energy deposits in the calorimeter (clusters), matched with tracks that provide information on the particles origin and direction and therefore of its momentum
I have been playing a leading role in the area electron performance and co-ordinated the development of the new electron reconstruction algorithm used by the ATLAS experiment in the Higgs discovery.
This improved electron reconstruction resulted of 30% in the expected sensitivity for the Higgs discovery in the H ZZ(*) 4l channel.
- Publications
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Show: Featured publications All publications
Featured publications
Journal articles
- . Physical Review Letters, 114(19), ---.
- . The European Physical Journal C, 74(7).
- . Physics Letters B, 738, 234-253.
- Observation of a new particle in the search for the Standard Model Higgs boson with the ATLAS detector at the LHC. Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics.
- . Physical Review D Particles Fields Gravitation and Cosmology, 86(3).
- Search for the Standard Model Higgs boson in the decay channel HZZ (*)4 with 4.8 fb -1 of pp collision data at s=7 TeV with ATLAS. Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics, 710(3), 383-402.
- Combined search for the Standard Model Higgs boson using up to 4.9 fb -1 of pp collision data at sqrt(s) = 7 TeV with the ATLAS detector at the LHC. Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics.
- . Physics Letters Section B Nuclear Elementary Particle and High Energy Physics, 705(5), 435-451.
- . EUR PHYS J C, 71(9).
All publications
Journal articles
- . Journal of High Energy Physics, 2025(10).
- . Physics Letters B, 139898-139898.
- . Physical Review Letters, 135.
- . Journal of High Energy Physics, 2025.
- . Reports on Progress in Physics, 88(9).
- . Physics Letters B, 868, 139671-139671.
- . Physics Letters B, 868, 139680-139680.
- . European Physical Journal C, 85(9).
- . Physics Letters B, 139843-139843.
- . Physics Letters B, 139892-139892.
- . Physical Review C, 112(2).
- . The European Physical Journal C, 85(8).
- . Journal of High Energy Physics, 2025(8).
- . Journal of High Energy Physics, 2025(8).
- . Journal of High Energy Physics, 2025(8).
- . Physics Letters B, 867, 139608-139608.
- . The European Physical Journal C, 85(7).
- . Journal of High Energy Physics, 2025(7).
- . Physical Review D, 112(1).
- . Journal of High Energy Physics, 2025(7).
- . The European Physical Journal C, 85(7).
- . Journal of High Energy Physics, 2025.
- . The European Physical Journal C, 85(7).
- . The European Physical Journal C, 85(7).
- . Journal of High Energy Physics, 2025.
- . Physics Letters B, 866, 139527-139527.
- . The European Physical Journal C, 85(6).
- . Physical Review D, 112(1).
- . Physical Review C, 111(6).
- . The European Physical Journal C, 85.
- . Physics Letters B, 865, 139472-139472.
- . The European Physical Journal C, 85(5).
- . The European Physical Journal C, 85(5).
- . Reports on Progress in Physics, 88(5).
- . Physical Review D, 112(1).
- . Journal of High Energy Physics, 2025.
- . Journal of High Energy Physics, 2025.
- . Physics Reports, 1116, 184-260.
- . Physical Review C, 111(4).
- . The European Physical Journal C, 85(4).
- . Journal of High Energy Physics, 2025.
- . Physical Review D, 111(7).
- . Physical Review Letters, 134(14).
- . Physical Review Letters, 134(12).
- . Journal of High Energy Physics, 2025.
- . The European Physical Journal C, 85(3).
- . Physical Review D, 111(5).
- . The European Physical Journal C, 85.
- . Journal of High Energy Physics, 2025(3).
- . Journal of Instrumentation, 20.
- . Journal of High Energy Physics, 2025(2).
- . The European Physical Journal C, 85.
- . Journal of High Energy Physics, 2025.
- . Journal of Instrumentation, 20.
- . Physical Review Letters, 134.
- . Physical Review D, 111.
- . Journal of High Energy Physics, 2025.
- . Journal of High Energy Physics, 2025.
- . Journal of High Energy Physics, 2025.
- . The European Physical Journal C, 85.
- . Physics Letters B, 861, 139277-139277.
- . Physical Review D, 111(1).
- . Computing and Software for Big Science, 9.
- . Journal of High Energy Physics, 2025(1).
- . Journal of High Energy Physics, 2025.
- . Journal of High Energy Physics, 2025.
- . Physics Letters B, 860, 139137-139137.
- . Physics Letters B, 860, 139177-139177.
- . Physical Review Letters, 133(26).
- . The European Physical Journal C, 84(12).
- . The European Physical Journal C, 84(12).
- . The European Physical Journal C, 84(12).
- . Journal of High Energy Physics, 2024(12).
- . Journal of High Energy Physics, 2024.
- . Physical Review Letters, 133(25).
- . Journal of High Energy Physics, 2024(12).
- . Physical Review D, 110.
- . Physics Letters B, 859, 139090-139090.
- . Journal of High Energy Physics, 2024.
- . Journal of High Energy Physics, 2024.
- . Journal of High Energy Physics, 2024.
- . Physical Review D, 110.
- . Journal of High Energy Physics, 2024(11).
- . Journal of High Energy Physics, 2024.
- . Physics Letters B, 858, 139007-139007.
- . The European Physical Journal C, 84(10).
- . Physical Review D, 110.
- . Journal of High Energy Physics, 2024(10).
- . The European Physical Journal C, 84(10).
- . Journal of High Energy Physics, 2024.
- . Physical Review Letters, 133.
- . Physical Review D, 110.
- . Physical Review Letters, 133.
- . The European Physical Journal C, 84.
- . Physical Review D, 110(7).
- . Journal of High Energy Physics, 2024.
- . Journal of Instrumentation, 19.
- . Physical Review Letters, 133.
- . The European Physical Journal C, 84(10).
- . Physical Review D, 110.
- . The European Physical Journal C, 84.
- . Physical Review D, 110(5).
- . Nature, 633, 542-547.
- . Physical Review Letters, 133(10).
- . Physical Review Letters, 133(10).
- . Machine Learning: Science and Technology, 5.
- . Journal of High Energy Physics, 2024.
- . Physics Letters B, 856, 138865-138865.
- . Physics Letters B, 856, 138938-138938.
- . Journal of High Energy Physics, 2024.
- . Journal of Instrumentation, 19.
- . Journal of High Energy Physics, 2024(8).
- . Journal of High Energy Physics, 2024.
- . Journal of High Energy Physics, 2024(8).
- . Physical Review D, 110(3).
- . The European Physical Journal C, 84.
- . Physical Review D, 110.
- . Physical Review D, 110.
- . Journal of High Energy Physics, 2024.
- . Physics Letters B, 855, 138817-138817.
- . Physics Letters B, 855, 138762-138762.
- . Physics Letters B, 855, 138764-138764.
- . The European Physical Journal C, 84(7).
- . The European Physical Journal C, 84(7).
- . Journal of High Energy Physics, 2024(7).
- . Journal of High Energy Physics, 2024.
- . Physical Review D, 110.
- . The European Physical Journal C, 84(7).
- . Physical Review Letters, 133(3).
- . Journal of High Energy Physics, 2024(7).
- . Science Bulletin, 69(19), 3005-3035.
- . Physics Letters B, 854, 138705-138705.
- . Physics Letters B, 854, 138726-138726.
- . Physics Letters B, 854, 138725-138725.
- . Physics Letters B, 854, 138736-138736.
- . Physics Letters B, 854, 138743-138743.
- . Physical Review Letters, 132.
- . Journal of High Energy Physics, 2024(6).
- . Journal of Instrumentation, 19(06).
- . Physical Review D, 109.
- . Physical Review D, 109.
- . Journal of Instrumentation, 19(06), P06014.
- . Physical Review D, 109.
- . Physical Review D, 109(11).
- . Physical Review Letters, 132.
- . Physical Review Letters, 132.
- . Journal of High Energy Physics, 2024.
- . Journal of Instrumentation, 19.
- . Journal of High Energy Physics, 2024(5).
- . Journal of Instrumentation, 19.
- . Physical Review Letters, 132(20).
- . Journal of High Energy Physics, 2024.
- . Journal of High Energy Physics, 2024.
- . Journal of High Energy Physics, 2024(5).
- . Journal of High Energy Physics, 2024(5).
- . Journal of High Energy Physics, 2024(5).
- . The European Physical Journal C, 84.
- . Journal of High Energy Physics, 2024(5).
- . Journal of High Energy Physics, 2024(4).
- . Journal of High Energy Physics, 2024(4).
- . Computing and Software for Big Science, 8(1).
- . Physical Review Letters, 132.
- . Journal of High Energy Physics, 2024(3).
- . The European Physical Journal C, 84(3).
- . Physical Review Letters, 132(10).
- . Computing and Software for Big Science, 8.
- . Physics Letters B, 850, 138536-138536.
- . Physical Review D, 109.
- . The European Physical Journal C, 84(2), 195.
- . Journal of High Energy Physics, 2024(2).
- . Physical Review Letters, 132.
- . The European Physical Journal C, 84(2).
- . Journal of High Energy Physics, 2024(2).
- . Journal of High Energy Physics, 2024(2).
- . The European Physical Journal C, 84(2).
- . Journal of High Energy Physics, 2024.
- . Journal of Instrumentation, 19.
- . Physics Letters B, 849, 138469-138469.
- . The European Physical Journal C, 84.
- . Physical Review Letters, 132(2).
- . Journal of High Energy Physics, 2024(1).
- . Physical Review Letters, 132(2).
- . Journal of High Energy Physics, 2024.
- . PHYSICAL REVIEW D, 109(11).
- . Physics Letters B, 848, 138324-138324.
- . Physics Letters B, 848, 138376-138376.
- . Physics Letters B, 848, 138394-138394.
- . Physics Letters B, 848, 138400-138400.
- . Chinese Physics C, 48(2).
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023(12).
- . Physical Review Letters, 131.
- . The European Physical Journal C, 83.
- . Physical Review Letters, 131.
- . Journal of High Energy Physics, 2023.
- . Physical Review D, 108.
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023.
- . Physics Letters B, 847, 138292-138292.
- . Physics Letters B, 847, 138316-138316.
- . Physics Letters B, 847, 138315-138315.
- . Journal of Instrumentation, 18.
- . Physical Review D, 108.
- . The European Physical Journal C, 83.
- . The European Physical Journal C, 83.
- . Journal of High Energy Physics, 2023(11).
- . Journal of High Energy Physics, 2023(11).
- . Journal of High Energy Physics, 2023(11).
- . Physics Letters B, 846, 138172-138172.
- . Physics Letters B, 846, 138154-138154.
- . Physics Letters B, 846, 138223-138223.
- . Physics Letters B, 846, 138222-138222.
- . Journal of Instrumentation, 18(11).
- . The European Physical Journal C, 83.
- . Physical Review Letters, 131.
- . Physical Review Letters, 131.
- . Nature, 623(7985), E5-E5.
- . Physical Review Letters, 131.
- . Physical Review Letters, 131.
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023.
- . Physical Review Letters, 131.
- . Physical Review D, 108(7).
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023(9).
- . Physical Review D, 108.
- . The European Physical Journal C, 83.
- . The European Physical Journal C, 83.
- . Physical Review D, 108.
- . The European Physical Journal C, 83(9).
- . Journal of High Energy Physics, 2023(9).
- . Physical Review D, 108.
- . The European Physical Journal C, 83(8).
- . Physical Review D, 108.
- . Journal of High Energy Physics, 2023(8).
- . Physical Review D, 108.
- . Physical Review D, 108.
- . Physical Review Letters, 131(7).
- . Journal of High Energy Physics, 2023(8).
- . The European Physical Journal C, 83(8).
- . Physical Review D, 108.
- . Physics Letters B, 843, 137829-137829.
- . Physics Letters B, 843, 137895-137895.
- . Physics Letters B, 843, 137745-137745.
- . Physics Letters B, 843, 137880-137880.
- . Physics Letters B, 843, 138019-138019.
- . Physics Letters B, 843, 137848-137848.
- . The European Physical Journal C, 83.
- . The European Physical Journal C, 83.
- . Physical Review C, 108(2).
- . Physical Review D, 108.
- . Physical Review Letters, 131(6).
- . Physical Review Letters, 131(6).
- . European Physical Journal C, 83(8), 686.
- . Physical Review D, 108(1).
- . The European Physical Journal C, 83(7), 681.
- . Journal of High Energy Physics, 2023(7), 234.
- . Journal of High Energy Physics, 2023(7).
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023(7).
- . Journal of High Energy Physics, 2023(7).
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023(7).
- . Journal of High Energy Physics, 2023.
- . Physical Review D, 108.
- . The European Physical Journal C, 83.
- . The European Physical Journal C, 83.
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023.
- . The European Physical Journal C, 83(7).
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023.
- . The European Physical Journal C, 83(7).
- . The European Physical Journal C, 83.
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023.
- . Physics Letters B, 842, 137379-137379.
- . Physics Letters B, 842, 137963-137963.
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023(7).
- . Journal of High Energy Physics, 2023(7).
- . Journal of High Energy Physics, 2023(7).
- . The European Physical Journal C, 83(7).
- . The European Physical Journal C, 83(7).
- . Journal of High Energy Physics, 2023(7).
- . Journal of High Energy Physics, 2023(6).
- . Journal of High Energy Physics, 2023(6).
- . The European Physical Journal C, 83(6).
- . Journal of High Energy Physics, 2023(6).
- . Journal of High Energy Physics, 2023(6).
- . Journal of High Energy Physics, 2023(6).
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023(6).
- . Journal of High Energy Physics, 2023(6).
- . Journal of High Energy Physics, 2023(6).
- . European Physical Journal C, 83(6).
- . European Physical Journal C, 83(6).
- . European Physical Journal C, 83(6).
- . Journal of High Energy Physics, 2023.
- . Journal of High Energy Physics, 2023(6).
- . The European Physical Journal C, 83(6).
- . The European Physical Journal C, 83(6).
- . Journal of High Energy Physics, 2023(6).
- . Journal of High Energy Physics, 2023(6).
- . Journal of High Energy Physics, 2023(6).
- . Journal of High Energy Physics, 2023.
- . The European Physical Journal C, 83(5).
- . The European Physical Journal C, 83(5).
- . Physical Review C, 107(5).
- . Physical Review C, 107(5).
- . Journal of High Energy Physics, 2023(5).
- . Journal of High Energy Physics, 2023(4).
- . Nature Physics, 19(2), 237-253.
- . Journal of High Energy Physics, 2022(11).
- . The European Physical Journal C, 82(11).
- . Journal of Instrumentation, 17(10).
- . Physical Review D, 106(5).
- . The European Physical Journal C, 82(8).
- . Journal of High Energy Physics, 2022(8).
- . Journal of High Energy Physics, 2022(8).
- . Journal of High Energy Physics, 2022(8).
- . Journal of High Energy Physics, 2022(8).
- . The European Physical Journal C, 82(7).
- . The European Physical Journal C, 82(7).
- . The European Physical Journal C, 82(7).
- . Physics Letters B, 830, 137106-137106.
- . Nature, 607(7917), 52-59.
- . Journal of High Energy Physics, 2022(6).
- . Journal of High Energy Physics, 2022(6).
- . Physics Letters B, 829, 137066-137066.
- . Physics Letters B, 829, 137077-137077.
- . Physical Review C, 105(6).
- . Journal of High Energy Physics, 2022(6).
- . The European Physical Journal C, 82(5).
- . The European Physical Journal C, 82(4).
- . The European Physical Journal C, 82(4).
- . The European Physical Journal C, 82(3).
- . Computing and Software for Big Science, 6(1).
- . The European Physical Journal C, 82(3).
- . Journal of High Energy Physics, 2022(3).
- . The European Physical Journal C, 82(2).
- . The European Physical Journal C, 82(1).
- . Computing and Software for Big Science, 6(1).
- . The European Physical Journal C, 82(1).
- . Journal of High Energy Physics, 2022(1).
- . Physical Review D, 105(1).
- . Journal of Instrumentation, 17(1).
- . Physics Letters B, 824, 136832-136832.
- . Physical Review D, 105(1).
- . The European Physical Journal C, 82(1).
- . Physical Review Letters, 127(27).
- . Physical Review D, 104(11).
- . Physical Review D, 104(11).
- . Journal of High Energy Physics, 2021(1).
- . The European Physical Journal C, 81(12).
- . Journal of High Energy Physics, 2021(12).
- . European Physical Journal C, 81(12).
- . Journal of High Energy Physics, 2021(11).
- . Journal of High Energy Physics, 2021(11).
- . Journal of High Energy Physics, 2021(11).
- . Journal of High Energy Physics, 2021(11).
- . Physics Letters B, 822, 136651-136651.
- . Journal of High Energy Physics, 2021(11).
- . European Physical Journal C: Particles and Fields, 81(11).
- . The European Physical Journal C, 81(10).
- . The European Physical Journal C, 81(10).
- . Journal of High Energy Physics, 2021(10).
- . Journal of Instrumentation, 16(08), P08025-P08025.
- . Physics Letters B, 819, 136412-136412.
- . The European Physical Journal C, 81(8).
- . The European Physical Journal C, 81(8).
- . Journal of High Energy Physics, 2021(7).
- . Journal of High Energy Physics, 2021(7).
- . Journal of High Energy Physics, 2021(7).
- . Journal of Instrumentation, 16(7).
- . The European Physical Journal C, 81(7).
- . The European Physical Journal C, 81(7).
- . Nature Physics, 17(7), 813-818.
- . Journal of Instrumentation, 16(07), P07006-P07006.
- . Journal of High Energy Physics, 2021(7).
- . Nature Physics, 17(7), 819-825.
- . Journal of High Energy Physics, 2021(6).
- . Journal of High Energy Physics, 2021(6).
- . Journal of High Energy Physics, 2021(6).
- . The European Physical Journal C, 81(6).
- . Journal of High Energy Physics, 2021(6).
- . Journal of High Energy Physics, 2021(5).
- . Journal of High Energy Physics, 2021(5).
- . Physics Letters B, 816, 136190-136190.
- . Physics Letters B, 816, 136204-136204.
- . The European Physical Journal C, 81(5).
- . The European Physical Journal C, 81(5).
- . Journal of High Energy Physics, 2021(4).
- . The European Physical Journal C, 81(4).
- . Journal of High Energy Physics, 2021(4).
- . Journal of High Energy Physics, 2021(4).
- . The European Physical Journal C, 81(4).
- . The European Physical Journal C, 81(4).
- . The European Physical Journal C, 81(4).
- . Journal of High Energy Physics, 2021(3).
- . Physical Review Letters, 126(12).
- . The European Physical Journal C, 81(3).
- . The European Physical Journal C, 81(3).
- . Journal of High Energy Physics, 2021(3).
- . Journal of High Energy Physics, 2021(2).
- . The European Physical Journal C, 81(2).
- . The European Physical Journal C, 81(2).
- . Journal of High Energy Physics, 2021(2).
- . Journal of High Energy Physics, 2021(1).
- . The European Physical Journal C, 81(1).
- . The European Physical Journal C, 81(1).
- . Physics Letters B, 812, 135980-135980.
- . Physics Letters B, 812, 135991-135991.
- . Journal of High Energy Physics, 2021(1).
- . Journal of High Energy Physics (JHEP), 2021(1).
- . JOURNAL OF HIGH ENERGY PHYSICS(11).
- . The European Physical Journal C, 80(12).
- . The European Physical Journal C, 80(12).
- . The European Physical Journal C, 80(12).
- . Journal of High Energy Physics, 2020(11).
- . The European Physical Journal C, 80(11).
- . The European Physical Journal C, 80(11).
- . The European Physical Journal C, 80(11).
- . EPJ Web of Conferences, 245, 06014-06014.
- . Physics Letters B, 810, 135797-135797.
- . Journal of High Energy Physics, 2020(11).
- . Journal of High Energy Physics, 2020(10).
- . The European Physical Journal C, 80(10).
- . Journal of High Energy Physics, 2020(10).
- . The European Physical Journal C, 80(10).
- . Journal of High Energy Physics, 2020(10).
- . Physics Letters B, 809, 135754-135754.
- . Journal of High Energy Physics, 2020(10).
- . Journal of High Energy Physics, 2020(10).
- . Journal of High Energy Physics, 2020(10).
- . Journal of High Energy Physics, 2020(9).
- . The European Physical Journal C, 80(8).
- . Journal of High Energy Physics (JHEP), 2020(8).
- . The European Physical Journal C, 80(8).
- . Journal of High Energy Physics, 2020(8).
- . Physics Letters B, 807, 135595-135595.
- . The European Physical Journal C, 80(8).
- . PHYSICAL REVIEW LETTERS, 125(5).
- . Journal of High Energy Physics, 2020(7).
- . Journal of High Energy Physics, 2020(7).
- . The European Physical Journal C, 80(7).
- . Journal of High Energy Physics, 2020(7).
- . Journal of High Energy Physics, 2020.
- . The European Physical Journal C, 80(6).
- . Physics Letters B, 805, 135426-135426.
- . Journal of High Energy Physics, 2020.
- . The European Physical Journal C, 80(5).
- . Physics Letters B, 803, 135341-135341.
- . Journal of High Energy Physics, 2020(3).
- . Journal of High Energy Physics, 2020(3).
- . Physics Letters B, 802, 135262-135262.
- . Journal of High Energy Physics, 2020(3).
- . Physical Review C, 101(2).
- . Physics Letters B, 801, 135148-135148.
- . Physics Letters B, 801, 135145-135145.
- . Journal of High Energy Physics, 2020(2).
- . The European Physical Journal C, 80(2).
- . Physics Letters B, 801, 135114-135114.
- . Journal of High Energy Physics, 2020(1).
- . Physics Letters B, 800, 135103-135103.
- . Physics Letters B, 800, 135082-135082.
- . Journal of High Energy Physics, 2020(1).
- . The European Physical Journal C, 80(1).
- . The European Physical Journal C, 80(1).
- . The European Physical Journal C, 80(1).
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- . Physical Review D, 98(9).
- . Physical Review D, 98(9).
- . Physical Review D, 98(9).
- . Physical Review D, 98(9).
- . Journal of High Energy Physics.
- . Physical Review C, 98(4).
- . Physical Review D, 98(5).
- . Journal of High Energy Physics, 09.
- . Physical Review D, 98(5).
- . Physical Review D, 98(5).
- . Physics Letters B, 784, 173-191.
- . Physical Review D, 98(3).
- . Physical Review D, 98(3).
- . Physical Review Letters, 121(9).
- . Physical Review Letters, 121(8).
- . Physical Review C, 98(2).
- . Physical Review D, 98(3).
- . Physical Review D, 98(3).
- . Physical Review D, 98(3).
- . Physical Review D, 98(1).
- . Physical Review D, 97(11).
- . Physical Review D, 97(9).
- . Physical Review Letters, 120(21).
- . Physical Review D, 97(7).
- . Physical Review Letters, 120(16).
- . Physical Review D, 97(5).
- . Physical Review D, 97(5).
- . Physical Review D, 97(3).
- . Physical Review D, 97(3).
- . Physical Review D, 97(1).
- . Physical Review C, 96(6).
- . Physical Review D, 96(11).
- . Physical Review D, 96(11).
- . Journal of Instrumentation, 12(12), P12009-P12009.
- . Physical Review D, 96(9).
- . Physical Review Letters, 119(19).
- . Physical Review D, 96(7).
- . Physical Review D, 96(5).
- . Physical Review A, 95(5).
- . European Physical Journal C, 77(5).
- . Physical Review A, 95(3).
- . Journal of High Energy Physics, 2016(9).
- . Journal of High Energy Physics, 2016.
- . Journal of Instrumentation, 11(06), P06008-P06008.
- . Physical Review D, 93(5).
- . Physical Review D, 93(3).
- . Physical Review Letters, 115(26).
- . Physical Review D, 92(11).
- . Physical Review D, 92(9).
- . Physical Review D, 92(9).
- . Physical Review C, 92(4).
- . Physical Review D, 92(7).
- . Physical Review D, 92(7).
- . Physical Review D, 92(7).
- . European Physical Journal C: Particles and Fields, 75(10).
- . Physical Review Letters, 115(13).
- . Journal of Instrumentation, 10(09), P09018-P09018.
- . Physical Review C, 92(3).
- . Physical Review C, 92(3).
- . Physical Review D, 92(5).
- . Physical Review Letters, 115(9).
- . Physical Review D, 92(3).
- . Physical Review D, 92(3).
- . Physical Review D, 92(1).
- . Physical Review Letters, 115(3).
- . Physical Review Letters, 115(3).
- . Physical Review D, 91(11).
- . Physical Review D, 91(11).
- . Physical Review D, 91(11).
- . Physical Review Letters, 114(23).
- . Physical Review D, 91(7).
- . Physical Review Letters, 114(16).
- . Physical Review Letters, 114(14).
- . Physical Review D, 91(5).
- . Physical Review Letters, 114(8).
- . Physical Review Letters, 114(7).
- . Physical Review D, 91(3).
- . Physical Review D, 91(1).
- . Physical Review D, 90(11).
- . Physical Review D, 90(11).
- . Physical Review Letters, 113(21).
- . New Journal of Physics, 16(11), 113013-113013.
- . Physical Review D, 90(7).
- . Physical Review Letters, 113(17).
- . Physical Review C, 90(4).
- . Physical Review D, 90(5).
- . Physical Review D, 90(5).
- . Journal of Instrumentation, 9(09), P09009-P09009.
- . Physical Review D, 90(5).
- . Journal of Instrumentation, 9(08), P08009-P08009.
- . New Journal of Physics, 16(8), 085007-085007.
- . Physical Review C, 90(2).
- . Journal of Instrumentation, 9(07), P07024-P07024.
- . Physical Review D, 90(1).
- . Physical Review Letters, 112(20).
- . Physical Review Letters, 112(4).
- . Physical Review D, 87(9).
- . Physical Review A, 86(1).
- . Physical Review D, 84(1).
Book chapters
- , The Performance of the ATLAS Detector (pp. 33-67). Springer Berlin Heidelberg
- , The Performance of the ATLAS Detector (pp. 1-31). Springer Berlin Heidelberg
- , The Performance of the ATLAS Detector (pp. 143-194). Springer Berlin Heidelberg
- , The Performance of the ATLAS Detector (pp. 101-142). Springer Berlin Heidelberg
- , The Performance of the ATLAS Detector (pp. 69-99). Springer Berlin Heidelberg
- , The Performance of the ATLAS Detector (pp. 195-238). Springer Berlin Heidelberg
- , The Performance of the ATLAS Detector (pp. 239-274). Springer Berlin Heidelberg
Conference proceedings
- . Proceedings of 42nd International Conference on High Energy Physics PoS(ICHEP2024) (pp 1212-1212), 18 July 2024.
- . Nuclear Physics A, Vol. 982 (pp 985-1009)
- . Nuclear Physics A, Vol. 967 (pp 277-280)
- . Nuclear Physics A, Vol. 967 (pp 942-964)
- . Nuclear Physics A, Vol. 956 (pp 922-944)
- Search for new signals in lepton pairs and photon pairs with the ATLAS detector. Proceedings of Science, Vol. 2012-July
- Search for resonances in the diphoton channel at the ATLAS experiment of the Large Hadron Collider. Proceedings of Science, Vol. 2011-July
- Commissioning and performance of the ATLAS muon, electron, tau and B-physics triggers with 7 TeV collisions at the LHC. 30th Physics in Collision Symposium Pic 2010
- . Journal of Physics: Conference Series, Vol. 119(2) (pp 022001-022001)
- . Journal of Physics: Conference Series, Vol. 119(2) (pp 022022-022022)
- The DAQ/HLT system of the ATLAS experiment. Proceedings of Science, Vol. 70
- . 2006 IEEE Nuclear Science Symposium Conference Record (pp 1017-1020), 29 October 2006 - 1 November 2006.
- Professional activities and memberships
-
- Holder of the Royal Society University Research Fellowship at the University of Sheffield. 2015-Today
- Holder of the Leverhulme Trust Early Career Fellowship at the University of Sheffield. 2013-2015
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