000904609 001__ 904609 000904609 005__ 20230217124240.0 000904609 0247_ $$2doi$$a10.1103/PhysRevD.104.085015 000904609 0247_ $$2ISSN$$a0556-2821 000904609 0247_ $$2ISSN$$a1089-4918 000904609 0247_ $$2ISSN$$a1538-4500 000904609 0247_ $$2ISSN$$a1550-2368 000904609 0247_ $$2ISSN$$a1550-7998 000904609 0247_ $$2ISSN$$a2470-0010 000904609 0247_ $$2ISSN$$a2470-0029 000904609 0247_ $$2Handle$$a2128/30284 000904609 0247_ $$2altmetric$$aaltmetric:108098134 000904609 0247_ $$2WOS$$aWOS:000707478800008 000904609 037__ $$aFZJ-2021-06179 000904609 082__ $$a530 000904609 1001_ $$0P:(DE-Juel1)185963$$aBruschi, David Edward$$b0$$eCorresponding author$$ufzj 000904609 245__ $$aSpacetime effects on wavepackets of coherent light 000904609 260__ $$aMelville, NY$$bInst.$$c2021 000904609 264_1 $$2Crossref$$3online$$bAmerican Physical Society (APS)$$c2021-10-11 000904609 264_1 $$2Crossref$$3print$$bAmerican Physical Society (APS)$$c2021-10-01 000904609 3367_ $$2DRIVER$$aarticle 000904609 3367_ $$2DataCite$$aOutput Types/Journal article 000904609 3367_ $$0PUB:(DE-HGF)16$$2PUB:(DE-HGF)$$aJournal Article$$bjournal$$mjournal$$s1642423038_29275 000904609 3367_ $$2BibTeX$$aARTICLE 000904609 3367_ $$2ORCID$$aJOURNAL_ARTICLE 000904609 3367_ $$00$$2EndNote$$aJournal Article 000904609 520__ $$aWe investigate the interplay between gravity and the quantum coherence present in the state of a pulse of light propagating in curved spacetime. We first introduce an operational way to distinguish between the overall shift in the pulse wave packet and its genuine deformation after propagation. We then apply our technique to quantum states of photons that are coherent in the frequency degree of freedom, as well as to states of completely incoherent light. We focus on Gaussian profiles and frequency combs and find that the quantum coherence initially present can enhance the deformation induced by propagation in a curved background. These results further support the claim that genuine quantum features, such as quantum coherence, can be used to probe the gravitational properties of physical systems. We specialize our techniques to Earth-to-satellite communication setups, where the effects of gravity are weak but can be tested with current satellite technologies. 000904609 536__ $$0G:(DE-HGF)POF4-5223$$a5223 - Quantum-Computer Control Systems and Cryoelectronics (POF4-522)$$cPOF4-522$$fPOF IV$$x0 000904609 542__ $$2Crossref$$i2021-10-11$$uhttps://link.aps.org/licenses/aps-default-license 000904609 588__ $$aDataset connected to CrossRef, Journals: juser.fz-juelich.de 000904609 7001_ $$00000-0001-5122-0001$$aChatzinotas, Symeon$$b1 000904609 7001_ $$0P:(DE-HGF)0$$aWilhelm, Frank K.$$b2 000904609 7001_ $$00000-0003-0849-9558$$aSchell, Andreas Wolfgang$$b3 000904609 77318 $$2Crossref$$3journal-article$$a10.1103/physrevd.104.085015$$bAmerican Physical Society (APS)$$d2021-10-11$$n8$$p085015$$tPhysical Review D$$v104$$x2470-0010$$y2021 000904609 773__ $$0PERI:(DE-600)2844732-3$$a10.1103/PhysRevD.104.085015$$gVol. 104, no. 8, p. 085015$$n8$$p085015$$tPhysical review / D$$v104$$x2470-0010$$y2021 000904609 8564_ $$uhttps://juser.fz-juelich.de/record/904609/files/PhysRevD.104.085015.pdf$$yOpenAccess 000904609 909CO $$ooai:juser.fz-juelich.de:904609$$pdnbdelivery$$pdriver$$pVDB$$popen_access$$popenaire 000904609 9101_ $$0I:(DE-588b)5008462-8$$6P:(DE-Juel1)185963$$aForschungszentrum Jülich$$b0$$kFZJ 000904609 9101_ $$0I:(DE-588b)5008462-8$$6P:(DE-HGF)0$$aForschungszentrum Jülich$$b2$$kFZJ 000904609 9131_ $$0G:(DE-HGF)POF4-522$$1G:(DE-HGF)POF4-520$$2G:(DE-HGF)POF4-500$$3G:(DE-HGF)POF4$$4G:(DE-HGF)POF$$9G:(DE-HGF)POF4-5223$$aDE-HGF$$bKey Technologies$$lNatural, Artificial and Cognitive Information Processing$$vQuantum Computing$$x0 000904609 9141_ $$y2021 000904609 915__ $$0StatID:(DE-HGF)0200$$2StatID$$aDBCoverage$$bSCOPUS 000904609 915__ $$0LIC:(DE-HGF)CCBY4$$2HGFVOC$$aCreative Commons Attribution CC BY 4.0 000904609 915__ $$0StatID:(DE-HGF)0600$$2StatID$$aDBCoverage$$bEbsco Academic Search 000904609 915__ $$0StatID:(DE-HGF)0100$$2StatID$$aJCR$$bPHYS REV D : 2016 000904609 915__ $$0StatID:(DE-HGF)0150$$2StatID$$aDBCoverage$$bWeb of Science Core Collection 000904609 915__ $$0StatID:(DE-HGF)0110$$2StatID$$aWoS$$bScience Citation Index 000904609 915__ $$0StatID:(DE-HGF)0111$$2StatID$$aWoS$$bScience Citation Index Expanded 000904609 915__ $$0StatID:(DE-HGF)9900$$2StatID$$aIF < 5 000904609 915__ $$0StatID:(DE-HGF)0510$$2StatID$$aOpenAccess 000904609 915__ $$0StatID:(DE-HGF)0030$$2StatID$$aPeer Review$$bASC 000904609 915__ $$0StatID:(DE-HGF)1150$$2StatID$$aDBCoverage$$bCurrent Contents - Physical, Chemical and Earth Sciences 000904609 915__ $$0StatID:(DE-HGF)0300$$2StatID$$aDBCoverage$$bMedline 000904609 915__ $$0StatID:(DE-HGF)0199$$2StatID$$aDBCoverage$$bClarivate Analytics Master Journal List 000904609 920__ $$lyes 000904609 9201_ $$0I:(DE-Juel1)PGI-12-20200716$$kPGI-12$$lQuantum Computing Analytics$$x0 000904609 980__ $$ajournal 000904609 980__ $$aVDB 000904609 980__ $$aUNRESTRICTED 000904609 980__ $$aI:(DE-Juel1)PGI-12-20200716 000904609 9801_ $$aFullTexts 000904609 999C5 $$2Crossref$$9-- missing cx lookup --$$a10.1098/rsta.2003.1227 000904609 999C5 $$2Crossref$$9-- missing cx lookup --$$a10.1088/1361-6633/aad5b2 000904609 999C5 $$2Crossref$$9-- missing cx lookup --$$a10.1063/1.5115814 000904609 999C5 $$1M. 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