Matches in SemOpenAlex for { <https://semopenalex.org/work/W3133844222> ?p ?o ?g. }
- W3133844222 abstract "High-dimensional entanglement promises to increase the information capacity of photons and is now routinely generated exploiting spatio-temporal degrees of freedom of single photons. A curious feature of these systems is the possibility to certify entanglement despite strong noise in the data. We show that it is also possible to exploit this noisy high-dimensional entanglement for quantum key distribution by introducing a protocol that uses mutliple subspaces of the high-dimensional system simultaneously. Our protocol can be used to establish a secret key even in extremely noisy experimental conditions, where qubit protocols fail. To show that, we analyze the performance of our protocol for noise models that apply to the two most commonly used sources of high-dimensional entanglement: time bins and spatial modes." @default.
- W3133844222 created "2021-03-15" @default.
- W3133844222 creator A5002547095 @default.
- W3133844222 creator A5003852042 @default.
- W3133844222 creator A5027058735 @default.
- W3133844222 creator A5052821225 @default.
- W3133844222 creator A5064414744 @default.
- W3133844222 creator A5069297782 @default.
- W3133844222 date "2021-03-01" @default.
- W3133844222 modified "2023-09-30" @default.
- W3133844222 title "Quantum Key Distribution Overcoming Extreme Noise: Simultaneous Subspace Coding Using High-Dimensional Entanglement" @default.
- W3133844222 cites W1963505317 @default.
- W3133844222 cites W1979804579 @default.
- W3133844222 cites W1982800591 @default.
- W3133844222 cites W1988134541 @default.
- W3133844222 cites W2011277039 @default.
- W3133844222 cites W2014116836 @default.
- W3133844222 cites W2015179126 @default.
- W3133844222 cites W2015254684 @default.
- W3133844222 cites W2019203881 @default.
- W3133844222 cites W2027722854 @default.
- W3133844222 cites W2035447115 @default.
- W3133844222 cites W2038159077 @default.
- W3133844222 cites W2038417345 @default.
- W3133844222 cites W2046523198 @default.
- W3133844222 cites W2051051926 @default.
- W3133844222 cites W2051557804 @default.
- W3133844222 cites W2067430275 @default.
- W3133844222 cites W2068470138 @default.
- W3133844222 cites W2071303168 @default.
- W3133844222 cites W2078354451 @default.
- W3133844222 cites W2084160582 @default.
- W3133844222 cites W2091236290 @default.
- W3133844222 cites W2106833918 @default.
- W3133844222 cites W2111631536 @default.
- W3133844222 cites W2114579353 @default.
- W3133844222 cites W2121213780 @default.
- W3133844222 cites W2122205028 @default.
- W3133844222 cites W2135248923 @default.
- W3133844222 cites W2140874929 @default.
- W3133844222 cites W2160738530 @default.
- W3133844222 cites W2165923712 @default.
- W3133844222 cites W2528617617 @default.
- W3133844222 cites W2528936088 @default.
- W3133844222 cites W2550557946 @default.
- W3133844222 cites W2586496758 @default.
- W3133844222 cites W2592996489 @default.
- W3133844222 cites W2726573634 @default.
- W3133844222 cites W2734851509 @default.
- W3133844222 cites W2943377024 @default.
- W3133844222 cites W2960557394 @default.
- W3133844222 cites W2963161744 @default.
- W3133844222 cites W2963645123 @default.
- W3133844222 cites W2970675658 @default.
- W3133844222 cites W2980441529 @default.
- W3133844222 cites W3004357554 @default.
- W3133844222 cites W3008629526 @default.
- W3133844222 cites W3015264836 @default.
- W3133844222 cites W3019805074 @default.
- W3133844222 cites W3098563351 @default.
- W3133844222 cites W3098618272 @default.
- W3133844222 cites W3099091343 @default.
- W3133844222 cites W3099259586 @default.
- W3133844222 cites W3099562605 @default.
- W3133844222 cites W3100991376 @default.
- W3133844222 cites W3102512968 @default.
- W3133844222 cites W3103664984 @default.
- W3133844222 cites W3103938199 @default.
- W3133844222 cites W3105295605 @default.
- W3133844222 cites W4248366565 @default.
- W3133844222 doi "https://doi.org/10.1103/physrevapplied.15.034003" @default.
- W3133844222 hasPublicationYear "2021" @default.
- W3133844222 type Work @default.
- W3133844222 sameAs 3133844222 @default.
- W3133844222 citedByCount "26" @default.
- W3133844222 countsByYear W31338442222021 @default.
- W3133844222 countsByYear W31338442222022 @default.
- W3133844222 countsByYear W31338442222023 @default.
- W3133844222 crossrefType "journal-article" @default.
- W3133844222 hasAuthorship W3133844222A5002547095 @default.
- W3133844222 hasAuthorship W3133844222A5003852042 @default.
- W3133844222 hasAuthorship W3133844222A5027058735 @default.
- W3133844222 hasAuthorship W3133844222A5052821225 @default.
- W3133844222 hasAuthorship W3133844222A5064414744 @default.
- W3133844222 hasAuthorship W3133844222A5069297782 @default.
- W3133844222 hasBestOaLocation W31338442222 @default.
- W3133844222 hasConcept C105795698 @default.
- W3133844222 hasConcept C115961682 @default.
- W3133844222 hasConcept C121040770 @default.
- W3133844222 hasConcept C121332964 @default.
- W3133844222 hasConcept C121864883 @default.
- W3133844222 hasConcept C12362212 @default.
- W3133844222 hasConcept C154945302 @default.
- W3133844222 hasConcept C159317903 @default.
- W3133844222 hasConcept C179518139 @default.
- W3133844222 hasConcept C203087015 @default.
- W3133844222 hasConcept C2524010 @default.
- W3133844222 hasConcept C26517878 @default.
- W3133844222 hasConcept C32270708 @default.
- W3133844222 hasConcept C32834561 @default.