High quantum efficiency photon-number-resolving detector for photonic on-chip information processing
We demonstrate a high-efficiency, photon-number resolving transition edge sensor, integrated on an optical silica waveguide structure. The detector consists of three individual absorber/sensor devices providing a total system detection efficiency of up to 93% for single photons at a wavelength of 15...
Main Authors: | , , , , , , , , , , , , , |
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Format: | Conference item |
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IEEE
2013
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_version_ | 1797068157922312192 |
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author | Calkins, B Mennea, P Lita, A Metcalf, B Kolthammer, W Linares, A Spring, J Humphreys, P Mirin, R Gates, J Smith, P Walmsley, I Gerrits, T Nam, S |
author_facet | Calkins, B Mennea, P Lita, A Metcalf, B Kolthammer, W Linares, A Spring, J Humphreys, P Mirin, R Gates, J Smith, P Walmsley, I Gerrits, T Nam, S |
author_sort | Calkins, B |
collection | OXFORD |
description | We demonstrate a high-efficiency, photon-number resolving transition edge sensor, integrated on an optical silica waveguide structure. The detector consists of three individual absorber/sensor devices providing a total system detection efficiency of up to 93% for single photons at a wavelength of 1551.9 nm. This new design enables high fidelity detection of quantum information processes in on-chip platforms. © 2013 The Optical Society. |
first_indexed | 2024-03-06T22:06:39Z |
format | Conference item |
id | oxford-uuid:5066a302-c951-48d4-b519-a1a344326286 |
institution | University of Oxford |
last_indexed | 2024-03-06T22:06:39Z |
publishDate | 2013 |
publisher | IEEE |
record_format | dspace |
spelling | oxford-uuid:5066a302-c951-48d4-b519-a1a3443262862022-03-26T16:13:17ZHigh quantum efficiency photon-number-resolving detector for photonic on-chip information processingConference itemhttp://purl.org/coar/resource_type/c_5794uuid:5066a302-c951-48d4-b519-a1a344326286Symplectic Elements at OxfordIEEE2013Calkins, BMennea, PLita, AMetcalf, BKolthammer, WLinares, ASpring, JHumphreys, PMirin, RGates, JSmith, PWalmsley, IGerrits, TNam, SWe demonstrate a high-efficiency, photon-number resolving transition edge sensor, integrated on an optical silica waveguide structure. The detector consists of three individual absorber/sensor devices providing a total system detection efficiency of up to 93% for single photons at a wavelength of 1551.9 nm. This new design enables high fidelity detection of quantum information processes in on-chip platforms. © 2013 The Optical Society. |
spellingShingle | Calkins, B Mennea, P Lita, A Metcalf, B Kolthammer, W Linares, A Spring, J Humphreys, P Mirin, R Gates, J Smith, P Walmsley, I Gerrits, T Nam, S High quantum efficiency photon-number-resolving detector for photonic on-chip information processing |
title | High quantum efficiency photon-number-resolving detector for photonic on-chip information processing |
title_full | High quantum efficiency photon-number-resolving detector for photonic on-chip information processing |
title_fullStr | High quantum efficiency photon-number-resolving detector for photonic on-chip information processing |
title_full_unstemmed | High quantum efficiency photon-number-resolving detector for photonic on-chip information processing |
title_short | High quantum efficiency photon-number-resolving detector for photonic on-chip information processing |
title_sort | high quantum efficiency photon number resolving detector for photonic on chip information processing |
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