Matches in SemOpenAlex for { <https://semopenalex.org/work/W3005030209> ?p ?o ?g. }
- W3005030209 abstract "Continuous variable quantum state tomography is one of the most powerful techniques to study the properties of light fields in quantum optics. However, the need for a fixed phase reference has so far prevented widespread usage in other fields such as semiconductor spectroscopy. Here, we introduce nonstationary quantum state tomography, which adapts the technique to the special requirements of ultrafast spectroscopy. In detail, we gain access to the amplitude and phase of light fields with a temporal resolution of about 100 fs without the need for a fixed phase reference. Furthermore, we show how our technique allows us to perform conditional studies of stochastic dynamics that are inaccessible experimentally by conventional means and demonstrate the capabilities experimentally by monitoring the stochastic dynamics of a thermal light field on the sub-ps scale. Finally, we discuss differences and similarities to more standard Hanbury Brown--Twiss photon correlation experiments, which may be considered as the discrete variable analogs of our technique." @default.
- W3005030209 created "2020-02-14" @default.
- W3005030209 creator A5019106633 @default.
- W3005030209 creator A5049533579 @default.
- W3005030209 creator A5091898384 @default.
- W3005030209 date "2020-02-14" @default.
- W3005030209 modified "2023-10-12" @default.
- W3005030209 title "Conditional spectroscopy via nonstationary optical homodyne quantum state tomography" @default.
- W3005030209 cites W1522020199 @default.
- W3005030209 cites W1580307737 @default.
- W3005030209 cites W1965237978 @default.
- W3005030209 cites W1965686098 @default.
- W3005030209 cites W1977733098 @default.
- W3005030209 cites W1984609266 @default.
- W3005030209 cites W2010537207 @default.
- W3005030209 cites W2021179200 @default.
- W3005030209 cites W2021803142 @default.
- W3005030209 cites W2023362185 @default.
- W3005030209 cites W2033364080 @default.
- W3005030209 cites W2038389955 @default.
- W3005030209 cites W2041221751 @default.
- W3005030209 cites W2042090166 @default.
- W3005030209 cites W2054144999 @default.
- W3005030209 cites W2059108078 @default.
- W3005030209 cites W2059883104 @default.
- W3005030209 cites W2062658177 @default.
- W3005030209 cites W2069914545 @default.
- W3005030209 cites W2071584147 @default.
- W3005030209 cites W2078639861 @default.
- W3005030209 cites W2083244730 @default.
- W3005030209 cites W2086847406 @default.
- W3005030209 cites W2123626604 @default.
- W3005030209 cites W2131962495 @default.
- W3005030209 cites W2144965412 @default.
- W3005030209 cites W2163525631 @default.
- W3005030209 cites W2167596506 @default.
- W3005030209 cites W2329375048 @default.
- W3005030209 cites W2490439061 @default.
- W3005030209 cites W2498776530 @default.
- W3005030209 cites W2565590341 @default.
- W3005030209 cites W2755062554 @default.
- W3005030209 cites W2795363514 @default.
- W3005030209 cites W2884897028 @default.
- W3005030209 cites W2980355229 @default.
- W3005030209 cites W3000413142 @default.
- W3005030209 cites W3038067977 @default.
- W3005030209 cites W3101417460 @default.
- W3005030209 cites W3103553903 @default.
- W3005030209 cites W3105158129 @default.
- W3005030209 doi "https://doi.org/10.1103/physreva.101.023824" @default.
- W3005030209 hasPublicationYear "2020" @default.
- W3005030209 type Work @default.
- W3005030209 sameAs 3005030209 @default.
- W3005030209 citedByCount "5" @default.
- W3005030209 countsByYear W30050302092020 @default.
- W3005030209 countsByYear W30050302092021 @default.
- W3005030209 countsByYear W30050302092023 @default.
- W3005030209 crossrefType "journal-article" @default.
- W3005030209 hasAuthorship W3005030209A5019106633 @default.
- W3005030209 hasAuthorship W3005030209A5049533579 @default.
- W3005030209 hasAuthorship W3005030209A5091898384 @default.
- W3005030209 hasBestOaLocation W30050302092 @default.
- W3005030209 hasConcept C120665830 @default.
- W3005030209 hasConcept C121332964 @default.
- W3005030209 hasConcept C121864883 @default.
- W3005030209 hasConcept C152026323 @default.
- W3005030209 hasConcept C15706264 @default.
- W3005030209 hasConcept C159317903 @default.
- W3005030209 hasConcept C166834278 @default.
- W3005030209 hasConcept C169699857 @default.
- W3005030209 hasConcept C178596936 @default.
- W3005030209 hasConcept C186468114 @default.
- W3005030209 hasConcept C194269254 @default.
- W3005030209 hasConcept C202444582 @default.
- W3005030209 hasConcept C22984246 @default.
- W3005030209 hasConcept C2778184138 @default.
- W3005030209 hasConcept C32891209 @default.
- W3005030209 hasConcept C33923547 @default.
- W3005030209 hasConcept C520434653 @default.
- W3005030209 hasConcept C62520636 @default.
- W3005030209 hasConcept C68717125 @default.
- W3005030209 hasConcept C70335271 @default.
- W3005030209 hasConcept C84114770 @default.
- W3005030209 hasConcept C9652623 @default.
- W3005030209 hasConceptScore W3005030209C120665830 @default.
- W3005030209 hasConceptScore W3005030209C121332964 @default.
- W3005030209 hasConceptScore W3005030209C121864883 @default.
- W3005030209 hasConceptScore W3005030209C152026323 @default.
- W3005030209 hasConceptScore W3005030209C15706264 @default.
- W3005030209 hasConceptScore W3005030209C159317903 @default.
- W3005030209 hasConceptScore W3005030209C166834278 @default.
- W3005030209 hasConceptScore W3005030209C169699857 @default.
- W3005030209 hasConceptScore W3005030209C178596936 @default.
- W3005030209 hasConceptScore W3005030209C186468114 @default.
- W3005030209 hasConceptScore W3005030209C194269254 @default.
- W3005030209 hasConceptScore W3005030209C202444582 @default.
- W3005030209 hasConceptScore W3005030209C22984246 @default.
- W3005030209 hasConceptScore W3005030209C2778184138 @default.
- W3005030209 hasConceptScore W3005030209C32891209 @default.
- W3005030209 hasConceptScore W3005030209C33923547 @default.