000297239 001__ 297239 000297239 005__ 20211110133945.0 000297239 0247_ $$2datacite_doi$$a10.3204/DESY-PROC-2008-02/guendelman_eduardo 000297239 0247_ $$2arXiv$$aarXiv:0808.2572 000297239 0247_ $$2WOS$$aWOS:00 000297239 0247_ $$2inspire$$ainspire:793385 000297239 037__ $$aPUBDB-2016-01786 000297239 041__ $$aen 000297239 0881_ $$aarXiv:0808.2572 000297239 088__ $$2arXiv$$aarXiv:0808.2572 000297239 1001_ $$0P:(DE-HGF)0$$aGuendelman, Eduardo I.$$b0 000297239 1112_ $$a4th Patras Workshop on Axions, WIMPs and WISPs$$cHamburg$$d2008-06-18 - 2008-06-21$$gAXION-WIMP 2008$$wGermany 000297239 245__ $$aAxions and Photons In Terms of Particles and Anti-Particles 000297239 260__ $$aHamburg$$bDeutsches Elektronen-Synchrotron, DESY$$c2009 000297239 300__ $$a133-136 000297239 3367_ $$033$$2EndNote$$aConference Paper 000297239 3367_ $$2DRIVER$$aconferenceObject 000297239 3367_ $$0PUB:(DE-HGF)8$$2PUB:(DE-HGF)$$aContribution to a conference proceedings$$bcontrib$$mcontrib$$s1461668621_1554 000297239 3367_ $$0PUB:(DE-HGF)15$$2PUB:(DE-HGF)$$aInternal Report$$mintrep 000297239 3367_ $$2BibTeX$$aINPROCEEDINGS 000297239 520__ $$aThe axion photon system in an external magnetic field, when for example considered with the geometry of the experiments exploring axion photon mixing (which can be represented by a 1+1 effective model) displays a continuous axion-photon duality symmetry in the limit the axion mass is neglected. The conservation law that follows from this symmetry is obtained. The magnetic field interaction is seen to be equivalent to first order to the interaction of a complex charged field with an external electric potential, where this ficticious electric potential is proportional to the external magnetic field. This allows one to solve for the scattering amplitudes using already known scalar QED results. Axion photon oscillations can be understood as violations of a charge symmetry in the scalar QED language. Going beyond the linear theory, the axion photon system in a self consistent magnetic field is shown, using this formalism, to have interesting soliton solutions that represent new non gravitational ways of trapping light. Finally, generalizing the scalar QED formalism to 2+1 dimensions makes it clear that a photon and an axion splitt into two components in an inhomogeneous magnetic field, an effect that reminds us of the Stern Gerlach experiment. 000297239 536__ $$0G:(DE-HGF)POF3-899$$a899 - ohne Topic (POF3-899)$$cPOF3-899$$fPOF III$$x0 000297239 588__ $$aDataset connected to DataCite, INSPIRE 000297239 650_7 $$2INSPIRE$$aquantum electrodynamics: scalar 000297239 650_7 $$2INSPIRE$$amagnetic field: external field 000297239 650_7 $$2INSPIRE$$aphoton: oscillation 000297239 650_7 $$2INSPIRE$$asoliton 000297239 693__ $$0EXP:(DE-H253)HERA(machine)-20150101$$1EXP:(DE-588)4159571-3$$5EXP:(DE-H253)HERA(machine)-20150101$$aHERA$$eFacility (machine) HERA$$x0 000297239 7001_ $$0P:(DE-HGF)0$$aShilon, Idan$$b1 000297239 773__ $$a10.3204/DESY-PROC-2008-02/guendelman_eduardo 000297239 7870_ $$0PUBDB-2016-01759$$aLindner, Axel et.al.$$dVerlag Deutsches Elektronen-Synchrotron, 2008$$iIsPartOf$$rDESY-PROC-2008-02$$tProceedings, 4th Patras Workshop on Axions, WIMPs and WISPs (AXION-WIMP 2008) 000297239 8564_ $$uhttps://bib-pubdb1.desy.de/record/297239/files/guendelman_eduardo.pdf$$yOpenAccess 000297239 8564_ $$uhttps://bib-pubdb1.desy.de/record/297239/files/guendelman_eduardo.gif?subformat=icon$$xicon$$yOpenAccess 000297239 8564_ $$uhttps://bib-pubdb1.desy.de/record/297239/files/guendelman_eduardo.jpg?subformat=icon-1440$$xicon-1440$$yOpenAccess 000297239 8564_ $$uhttps://bib-pubdb1.desy.de/record/297239/files/guendelman_eduardo.jpg?subformat=icon-180$$xicon-180$$yOpenAccess 000297239 8564_ $$uhttps://bib-pubdb1.desy.de/record/297239/files/guendelman_eduardo.jpg?subformat=icon-640$$xicon-640$$yOpenAccess 000297239 8564_ $$uhttps://bib-pubdb1.desy.de/record/297239/files/guendelman_eduardo.pdf?subformat=pdfa$$xpdfa$$yOpenAccess 000297239 909CO $$ooai:bib-pubdb1.desy.de:297239$$pdnbdelivery$$pdriver$$pVDB$$popen_access$$popenaire 000297239 9131_ $$0G:(DE-HGF)POF3-899$$1G:(DE-HGF)POF3-890$$2G:(DE-HGF)POF3-800$$3G:(DE-HGF)POF3$$4G:(DE-HGF)POF$$aDE-HGF$$bProgrammungebundene Forschung$$lohne Programm$$vohne Topic$$x0 000297239 915__ $$0StatID:(DE-HGF)0510$$2StatID$$aOpenAccess 000297239 9201_ $$0I:(DE-H253)L-20120731$$kL$$lBibliothek und Dokumentation$$x0 000297239 980__ $$acontrib 000297239 980__ $$aVDB 000297239 980__ $$aUNRESTRICTED 000297239 980__ $$aintrep 000297239 980__ $$aI:(DE-H253)L-20120731 000297239 9801_ $$aUNRESTRICTED 000297239 9801_ $$aFullTexts