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Topic Area: Quantum Optics

Displaying records 61 to 70 of 72 records.
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61. Efficient Generation of Correlated Photon Pairs in a Microstructure Fiber
Topic: Quantum Optics
Published: 12/15/2005
Authors: Jingyun Fan, Alan L Migdall, L Wang
Abstract: We report efficient generation of correlated photon pairs through degenerate four-wave mixing in microstructure fibers. With 735.7 nm pump pulses producing conjugate signal (688.5 nm) and idler (789.8 nm) photons in an 1.8 m microstructure fiber, we ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=840962

62. Efficient generation of correlated photon pairs in a microstructure fiber
Topic: Quantum Optics
Published: 12/15/2005
Authors: Jingyun Fan, Alan L Migdall, L Wang
Abstract: We report efficient generation of correlated photon pairs through degenerate four-wave mixing in a microstructure fiber. With 735.7 nm pump pulses producing correlated signal (688.5 nm) and idler (789.8 nm) photons in a 1.8 m microstructure fiber, we ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=840977

63. On-demand Single Photons from Individual Epitaxial Quantum Dots
Topic: Quantum Optics
Published: 10/24/2005
Authors: Richard P Mirin, Martin J Stevens
Abstract: We will describe our group's efforts to use epitaxial InGaAs/GaAs quantum dots as sources of on-demand single photons and indistinguishable single photons. We have demonstrated second order intensity correlation measurements, g^u2^{tau}, with g^u ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=32068

64. High resolution, high collection efficiency in numerical aperture increasing lens microscopy of individual quantum dots
Topic: Quantum Optics
Published: 8/9/2005
Authors: Zhiheng H Liu, B. B. Goldberg, Stephen B Ippolito, Anthony N Vamivakas, M. S. Unlu, Richard P Mirin
Abstract: We demonstrate the application of a subsurface solid immersion technique to the photoluminescence spectroscopy of individual quantum dots. Contrasted with the conventional solid immersion microscopy, we used a numerical aperture increasing lens and m ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=32480

65. Temperature-dependent, single quantum dot single photon statistics
Topic: Quantum Optics
Published: 5/16/2004
Author: Richard P Mirin
Abstract: We describe temperature-dependent photon antibunching measurements from single InGaAs/GaAs quantum dots. The second order intensity correlation demonstrates single emitter emission up to 120 K and nonclassical light emission to 135 K.
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=31551

66. Differences Explained in Correlated-Photon Metrology Techniques
Topic: Quantum Optics
Published: 11/1/1999
Author: Alan L Migdall
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=104037

67. Migdall Responds II: More Correlated Photon Metrology History
Topic: Quantum Optics
Published: 11/1/1999
Author: Alan L Migdall
Abstract: I appreciate the comments of Mike Gruntman (Sept., page 80) concerning the history of using correlated pairs of particles(photons) to determine absolute detector quantum efficiencies. Unfortunately there is an overall misunderstanding of the techniqu ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=841390

68. Migdall Responds
Topic: Quantum Optics
Published: 5/1/1999
Author: Alan L Migdall
Abstract: I thank Duane Jaecks for pointing out earlier origins of the first of the correlated photon metrology applications described in my article - absolute detector quantum efficiency. The work in these early references is helpful in putting the technique ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=841358

69. More on History of Applied Correlated-Photon Metrology-Migdall Replies
Topic: Quantum Optics
Published: 5/1/1999
Author: Alan L Migdall
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=104035

70. Correlated-Photon Metrology without Absolute Standards
Topic: Quantum Optics
Published: 1/1/1999
Author: Alan L Migdall
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=104036



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