Matches in SemOpenAlex for { <https://semopenalex.org/work/W4304193749> ?p ?o ?g. }
- W4304193749 abstract "We discuss how two-photon absorption (TPA) of squeezed and coherent states of light can be detected in measurements of the transmitted light fields. Such measurements typically suffer from competing loss mechanisms such as experimental imperfections (i.e., imperfect photodetectors) and other linear scattering losses inside the sample itself, which can lead to incorrect assessments of the two-photon-absorption cross section. We evaluate the sensitivity with which TPA can be detected and find that at sufficiently large photon numbers TPA sensitivity of squeezed vacua or squeezed coherent states can become independent of linear losses that occur after the TPA event has taken place. In particular, this happens for measurements of the photon number or of the antisqueezed field quadrature, where large fluctuations counteract and exactly cancel the degradation caused by single-photon losses." @default.
- W4304193749 created "2022-10-11" @default.
- W4304193749 creator A5030313547 @default.
- W4304193749 creator A5046888884 @default.
- W4304193749 creator A5082294498 @default.
- W4304193749 creator A5082517727 @default.
- W4304193749 date "2022-10-11" @default.
- W4304193749 modified "2023-10-14" @default.
- W4304193749 title "Two-photon-absorption measurements in the presence of single-photon losses" @default.
- W4304193749 cites W1584661976 @default.
- W4304193749 cites W1982296531 @default.
- W4304193749 cites W1986450423 @default.
- W4304193749 cites W1987863394 @default.
- W4304193749 cites W1989773568 @default.
- W4304193749 cites W1993122650 @default.
- W4304193749 cites W1998488804 @default.
- W4304193749 cites W2031623682 @default.
- W4304193749 cites W2035379364 @default.
- W4304193749 cites W2042573653 @default.
- W4304193749 cites W2042945340 @default.
- W4304193749 cites W2048075951 @default.
- W4304193749 cites W2055992969 @default.
- W4304193749 cites W2057736546 @default.
- W4304193749 cites W2058774482 @default.
- W4304193749 cites W2063584799 @default.
- W4304193749 cites W2065704174 @default.
- W4304193749 cites W2069850083 @default.
- W4304193749 cites W2070320789 @default.
- W4304193749 cites W2073438276 @default.
- W4304193749 cites W2076113334 @default.
- W4304193749 cites W2078433831 @default.
- W4304193749 cites W2079837381 @default.
- W4304193749 cites W2080861017 @default.
- W4304193749 cites W2083423624 @default.
- W4304193749 cites W2095965649 @default.
- W4304193749 cites W2098001511 @default.
- W4304193749 cites W2264646372 @default.
- W4304193749 cites W2325093831 @default.
- W4304193749 cites W2406980188 @default.
- W4304193749 cites W2550448660 @default.
- W4304193749 cites W2562065398 @default.
- W4304193749 cites W2571225755 @default.
- W4304193749 cites W2613428129 @default.
- W4304193749 cites W2753759599 @default.
- W4304193749 cites W2796929765 @default.
- W4304193749 cites W2887264975 @default.
- W4304193749 cites W2889595379 @default.
- W4304193749 cites W2896176498 @default.
- W4304193749 cites W2963599923 @default.
- W4304193749 cites W2972393513 @default.
- W4304193749 cites W2989855942 @default.
- W4304193749 cites W3000326939 @default.
- W4304193749 cites W3011856141 @default.
- W4304193749 cites W3014870417 @default.
- W4304193749 cites W3015607416 @default.
- W4304193749 cites W3027923437 @default.
- W4304193749 cites W3036015651 @default.
- W4304193749 cites W3040695379 @default.
- W4304193749 cites W3098723556 @default.
- W4304193749 cites W3101509819 @default.
- W4304193749 cites W3102293970 @default.
- W4304193749 cites W3103454495 @default.
- W4304193749 cites W3134537017 @default.
- W4304193749 cites W3135281069 @default.
- W4304193749 cites W3144096257 @default.
- W4304193749 cites W3152929187 @default.
- W4304193749 cites W3156441186 @default.
- W4304193749 cites W3159031510 @default.
- W4304193749 cites W3160652004 @default.
- W4304193749 cites W3170233241 @default.
- W4304193749 cites W3187881674 @default.
- W4304193749 cites W3195031192 @default.
- W4304193749 cites W3202978106 @default.
- W4304193749 cites W3204194271 @default.
- W4304193749 cites W3205681353 @default.
- W4304193749 cites W3206670703 @default.
- W4304193749 cites W3207951914 @default.
- W4304193749 cites W3208785587 @default.
- W4304193749 cites W4221066539 @default.
- W4304193749 cites W4245850800 @default.
- W4304193749 cites W4249106720 @default.
- W4304193749 cites W4287447913 @default.
- W4304193749 cites W4295900757 @default.
- W4304193749 doi "https://doi.org/10.1103/physreva.106.043706" @default.
- W4304193749 hasPublicationYear "2022" @default.
- W4304193749 type Work @default.
- W4304193749 citedByCount "2" @default.
- W4304193749 countsByYear W43041937492023 @default.
- W4304193749 crossrefType "journal-article" @default.
- W4304193749 hasAuthorship W4304193749A5030313547 @default.
- W4304193749 hasAuthorship W4304193749A5046888884 @default.
- W4304193749 hasAuthorship W4304193749A5082294498 @default.
- W4304193749 hasAuthorship W4304193749A5082517727 @default.
- W4304193749 hasBestOaLocation W43041937491 @default.
- W4304193749 hasConcept C101075120 @default.
- W4304193749 hasConcept C120665830 @default.
- W4304193749 hasConcept C121332964 @default.
- W4304193749 hasConcept C125287762 @default.
- W4304193749 hasConcept C127413603 @default.
- W4304193749 hasConcept C159317903 @default.