Klaus Scharnhorst - Publications
K. Scharnhorst: Photon-photon scattering and related phenomena.
Experimental and theoretical approaches: The early period.
arXiv:1711.05194, 〈hal-01638181〉, 119 pp..
[INSPIRE record]
Abstract:
We review the literature on possible violations of the superposition principle
for electromagnetic fields in vacuum from the earliest studies until the
emergence of renormalized QED at the end of the 1940's. The exposition
covers experimental work on photon-photon scattering and the propagation of
light in external electromagnetic fields and relevant theoretical work on nonlinear
electrodynamic theories (Born-Infeld theory and QED) until the year
1949. To enrich the picture, pieces of reminiscences from a number of (theoretical)
physicists on their work in this field are collected and included or
appended.
The paper is cited in:
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F. Přeučil, J. Hořejší:
Effective Euler–Heisenberg Lagrangians in models of QED.
Journal of Physics G: Nuclear and Particle Physics 45(2018)085005, 13 pp.
(DOI: 10.1088/1361-6471/aace90).
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R. Conti, L. Iannella, S. Negro, R. Tateo:
Generalised Born-Infeld models, Lax operators and the T BarT perturbation.
Journal of High Energy Physics (2018) No. 11, 007, 23 pp.
(DOI: 10.1007/JHEP11(2018)007)
[arXiv:1806.11515].
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R. Baier, A. Rebhan, M. Wödlinger:
Light-by-light scattering in the presence of magnetic fields.
Physical Review D 98(2018)056001, 14 pp.
(DOI: 10.1103/PhysRevD.98.056001)
[University of Bielefeld Report BI-TP 2018/02,
Technical University Vienna Report TUW-18-04,
arXiv:1804.06140].
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R. Battesti, J. Beard, S. Böser, N. Bruyant, D. Budker,
S.A. Crooker, E.J.Daw, V.V. Flambaum, T. Inada,
I.G. Irastorza, F. Karbstein, D.L. Kim, M.G. Kozlov,
Z. Melhem, A. Phipps, P. Pugnat, G. Rikken, C. Rizzo,
M. Schott, Y.K. Semertzidis, H.H.J. ten Kate, G. Zavattini:
High magnetic fields for fundamental physics.
Physics Reports 765-766(2018)1-39
(DOI: 10.1016/j.physrep.2018.07.005)
[arXiv:1803.07547].
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C.M. Barriuso Gutiérrez:
Dispersión γγ [γγ scattering]. Paper archived at ResearchGate, 2018, 9 pp.
(DOI: 10.13140/RG.2.2.19811.60965). [in Spanish]
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S.H. Dhobi, R.C. Pangeni, K. Yadav, M.D.J. Rangrej:
Experimental calculation of voltage generated by numbers of atoms
when photon incident and cross-section area of single photon.
International Journal of Biology, Physics & Mathematics 5(2019)1-11
(archived at ResearchGate, DOI: 10.13140/RG.2.2.25465.01120).
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S.H. Dhobi, C.B.T. Lama, M.D.J. Rangrej, T.R. Karki, Y. Limbu, S. Humagain:
Numerical analysis of photon and electron size, and verifying one to one correspond rule of
Einstein photoelectric effect.
International Journal of Scientific & Engineering Research 10(2019)838-841
( https://www.ijser.org/onlineResearchPaperViewer.aspx?Numerical-Analysis-of-Photon-and-Electron-Size-and-Verifying-One-to-One-Correspond-Rule-of-Einstein-Photoelectric-Effect.pdf ).
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A. Ilderton:
Note on the conjectured breakdown of QED perturbation theory in strong fields.
Physical Review D 99(2019)085002, 7 pp.
(DOI: 10.1103/PhysRevD.99.085002)
[arXiv:1901.00317].
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M. Kłusek-Gawenda, R. McNulty, R. Schicker, A. Szczurek:
Light-by-light scattering in ultraperipheral heavy-ion collisions at low diphoton masses.
Physical Review D 99(2019)093013, 10 pp.
(DOI: 10.1103/PhysRevD.99.093013)
[arXiv:1904.01243].
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G. David:
Direct real photons in relativistic heavy ion collisions.
Reports on Progress in Physics 83(2020)046301, 55 pp.
(DOI: 10.1088/1361-6633/ab6f57)
[arXiv:1907.08893].
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I. Raya Farías:
Acción efectiva de un campo de Maxwell arbitrario interactuando mediante un campo
cuántico escalar [Effective action of an arbitrary Maxwell field interacting with a
scalar quantum field].
Thesis (tesis de nivel licenciatura), Universidad Michoacana de San Nicolás de Hidalgo, Morelia, 2019, 101 pp.
( http://bibliotecavirtual.dgb.umich.mx:8083/xmlui/handle/DGB_UMICH/12140 ). [in Spanish, English abstract]
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S.H. Dhobi, S.K. Sharma, M.N. Upadhyay, R.P. Dahal, G.P. Adhikari, K. Yadav:
Cross section area of the visible spectrum with the potential difference.
Advanced Studies in Theoretical Physics 14(2020)311 - 318
( 10.12988/astp.2020.91493 ).
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J. Alfaro, A. Soto:
Photon-photon scattering in very special relativity.
arXiv:2001.12003, 9 pp..
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N. Ahmadiniaz, C. Lopez-Arcos, M.A. Lopez-Lopez, C. Schubert:
The QED four-photon amplitudes off-shell: Part 1.
Nuclear Physics 991(2023)116216, 36 pp.
(DOI: 10.1016/j.nuclphysb.2023.116216)
[arXiv:2012.11791].
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M.A.A. Ahmed, H. Zainuddin, N.M. Shah, S.K. Chen:
Thermal longitudinal photon interaction in mixed space.
In: Teck-Yong Tou, Jun’ichi Yokoyama, Roslan Abdul Shukor,
Kazuhiro Tanaka, Hyoung Joon Choi, Ryoji Matsumoto, Oi-Hoong Chin,
Jia Hou Chin, Kuru Ratnavelu (Eds.): Proceedings of the 14th Asia-Pacific
Physics Conference, 17–22 November 2019, Kunching, Malaysia.
American Institute of Physics, College Park, MD, 2021, item 100003
4 pp. (DOI: 10.1063/5.0037368).
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S.H. Dhobi:
Calculation of photon size and its energy distribution experientially and
analytically.
Master Thesis, Tribhuvan University, Patan Dhoka, Lalitpur,
2021, 68 pp. (PDF archived at ResearchGate: https://www.researchgate.net/publication/341411635_CALCULATION_OF_PHOTON_SIZE_AND_ITS_ENERGY_DISTRIBUTION_EXPERIENTIALLY_AND_ANALYTICALLY ).
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M. Sangal:
The interaction of light with matter and light with light.
Doctoral Thesis, Universität Heidelberg, Heidelberg,
2021, 110 pp. (DOI: 10.11588/heidok.00029440).
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A.S. Sheremet, M.I. Petrov, I.V. Iorsh, A.V. Poshakinskiy, A.N. Poddubny:
Waveguide quantum electrodynamics: Collective radiance and photon-photon correlations.
arXiv:2103.06824, 64 pp..
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M.A.A. Ahmed, H. Zainuddin, N.M. Shah, Madjid Lakhdar Hamou Ladrem:
Real time thermal photon–photon interactions in the mixed space.
International Journal of Modern Physics A 37(2022)2250008, 23 pp.
(DOI: 10.1142/s0217751x22500087).
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L.A. Rodríguez Chacón:
Light by light scattering at one-loop order in scalar QED.
Master Thesis, Universidad Michoacana de San Nicolás de Hidalgo, Morelia, 2022, 89 pp.
( http://bibliotecavirtual.dgb.umich.mx:8083/xmlui/handle/DGB_UMICH/6712 ). [Spanish abstract]
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A.J. Macleod, J.P. Edwards, T. Heinzl, B. King, S.V. Bulanov:
Strong-field vacuum polarisation with high energy lasers.
New Journal of Physics 25(2023)093002, 22 pp.
(DOI: 10.1088/1367-2630/acf1c0)
[arXiv:2304.02114].
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Document last modified: October 25, 2023
Document address: http://people.physik.hu-berlin.de/~scharnh/cite34.htm