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Experimental evidence of quantum radiation reaction in aligned crystals

Quantum radiation reaction is the influence of multiple photon emissions from a charged particle on the particle's dynamics, characterized by a significant energy-momentum loss per emission. Here we report experimental radiation emission spectra from ultrarelativistic positrons in silicon in a...

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Detalles Bibliográficos
Autores principales: Wistisen, Tobias N., Di Piazza, Antonino, Knudsen, Helge V., Uggerhøj, Ulrik I.
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1038/s41467-018-03165-4
http://cds.cern.ch/record/2308772
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author Wistisen, Tobias N.
Di Piazza, Antonino
Knudsen, Helge V.
Uggerhøj, Ulrik I.
author_facet Wistisen, Tobias N.
Di Piazza, Antonino
Knudsen, Helge V.
Uggerhøj, Ulrik I.
author_sort Wistisen, Tobias N.
collection CERN
description Quantum radiation reaction is the influence of multiple photon emissions from a charged particle on the particle's dynamics, characterized by a significant energy-momentum loss per emission. Here we report experimental radiation emission spectra from ultrarelativistic positrons in silicon in a regime where quantum radiation reaction effects dominate the positron's dynamics. Our analysis shows that while the widely used quantum approach is overall the best model, it does not completely describe all the data in this regime. Thus, these experimental findings may prompt seeking more generally valid methods to describe quantum radiation reaction. This experiment is a fundamental test of quantum electrodynamics in a regime where the dynamics of charged particles is strongly influenced not only by the external electromagnetic fields but also by the radiation field generated by the charges themselves and where each photon emission may significantly reduce the energy of the charge.
id cern-2308772
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
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spelling cern-23087722022-03-31T02:36:30Zdoi:10.1038/s41467-018-03165-4http://cds.cern.ch/record/2308772engWistisen, Tobias N.Di Piazza, AntoninoKnudsen, Helge V.Uggerhøj, Ulrik I.Experimental evidence of quantum radiation reaction in aligned crystalsphysics.plasm-phOther Fields of Physicshep-exParticle Physics - ExperimentQuantum radiation reaction is the influence of multiple photon emissions from a charged particle on the particle's dynamics, characterized by a significant energy-momentum loss per emission. Here we report experimental radiation emission spectra from ultrarelativistic positrons in silicon in a regime where quantum radiation reaction effects dominate the positron's dynamics. Our analysis shows that while the widely used quantum approach is overall the best model, it does not completely describe all the data in this regime. Thus, these experimental findings may prompt seeking more generally valid methods to describe quantum radiation reaction. This experiment is a fundamental test of quantum electrodynamics in a regime where the dynamics of charged particles is strongly influenced not only by the external electromagnetic fields but also by the radiation field generated by the charges themselves and where each photon emission may significantly reduce the energy of the charge.Quantum radiation reaction is the influence of multiple photon emissions from a charged particle on the particle's dynamics, characterized by a significant energy-momentum loss per emission. Here we report experimental radiation emission spectra from ultrarelativistic positrons in silicon in a regime where quantum radiation reaction effects dominate the positron's dynamics. Our analysis shows that while the widely used quantum approach is overall the best model, it does not completely describe all the data in this regime. Thus, these experimental findings may prompt seeking more generally valid methods to describe quantum radiation reaction. This experiment is a fundamental test of quantum electrodynamics in a regime where the dynamics of charged particles is strongly influenced not only by the external electromagnetic fields but also by the radiation field generated by the charges themselves and where each photon emission may significantly reduce the energy of the charge.Radiation reaction is the influence of the electromagnetic field emitted by a charged particle on the dynamics of the particle itself. Here we report experimental radiation emission spectra from ultrarelativistic positrons in silicon in a regime where both quantum and radiation-reaction effects dominate the dynamics of the positrons. We found that each positron emits multiple photons with energy comparable to its own energy, revealing the importance of quantum photon recoil. Moreover, the shape of the emission spectra indicates that photon emissions occur in a nonlinear regime where positrons absorb several quanta from the crystal field. Our theoretical analysis shows that only a full quantum theory of radiation reaction is capable of explaining the experimental results, with radiation-reaction effects arising from the recoils undergone by the positrons during multiple photon emissions. This experiment is the first fundamental test of quantum electrodynamics in a new regime where the dynamics of charged particles is determined not only by the external electromagnetic fields but also by the radiation-field generated by the charges themselves. Future experiments carried out in the same line will be able to, in principle, also shed light on the fundamental question about the structure of the electromagnetic field close to elementary charges.arXiv:1704.01080oai:cds.cern.ch:23087722017-03-27
spellingShingle physics.plasm-ph
Other Fields of Physics
hep-ex
Particle Physics - Experiment
Wistisen, Tobias N.
Di Piazza, Antonino
Knudsen, Helge V.
Uggerhøj, Ulrik I.
Experimental evidence of quantum radiation reaction in aligned crystals
title Experimental evidence of quantum radiation reaction in aligned crystals
title_full Experimental evidence of quantum radiation reaction in aligned crystals
title_fullStr Experimental evidence of quantum radiation reaction in aligned crystals
title_full_unstemmed Experimental evidence of quantum radiation reaction in aligned crystals
title_short Experimental evidence of quantum radiation reaction in aligned crystals
title_sort experimental evidence of quantum radiation reaction in aligned crystals
topic physics.plasm-ph
Other Fields of Physics
hep-ex
Particle Physics - Experiment
url https://dx.doi.org/10.1038/s41467-018-03165-4
http://cds.cern.ch/record/2308772
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