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Displaying records 41 to 48.
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41. Restrictions on Transversal Encoded Quantum Gate Sets
Topic: Quantum Information
Published: 3/18/2009
Authors: Bryan Keith Eastin, Emanuel H Knill
Abstract: Transversal gates play an important role in the theory of fault-tolerant quantum computation due to their simplicity and robustness to noise. By definition, transversal operators do not couple physical subsystems within the same code block. Consequen ...

42. Spectrally Bright and Broad Fiber-Based Heralded Single-Photon Source
Topic: Quantum Information
Published: 7/29/2008
Authors: Elizabeth A Goldschmidt, M D. Eisaman, Jingyun Fan, Sergey V Polyakov, Alan L Migdall
Abstract: We present the first experimental characterization of a heralded single-photon source based on spontaneous four-wave-mixing in a single-mode microstructure fiber. We measure the second-order correlation function, g(2)(0), to be far below the classi ...

43. State Discriminiation Signal Nulling Receivers
Topic: Quantum Information
Published: 9/6/2011
Authors: Francisco E. Becerra Chavez, Jingyun Fan, Gerald Baumgartner, Sergey V Polyakov, Julius Goldhar, Jonathan Kosloski, Alan L Migdall
Abstract: Optimized state-discrimination receiver strategies for nonorthogonal states can improve the capacity of the communication channels operating with error rates below the ones corresponding to conventional receivers. Coherent signal-nulling receivers us ...

44. The Cooper Pair Transistor
Topic: Quantum Information
Published: 9/17/2010
Author: Jose Alberto Aumentado
Abstract: The Cooper pair transistor (CPT) is a superconducting electrometer that has applications in quantum information as well as fundamental superconductivity studies. Since it operates in a near-dissipationless mode, it has potential as a minimally inva ...

45. Toward scalable ion traps for quantum information processing
Topic: Quantum Information
Published: 3/16/2010
Authors: Jason Amini, Hermann Uys, Janus H. Wesenberg, Signe Seidelin, Joseph Wright Britton, John J Bollinger, Dietrich G Leibfried, Christian Ospelkaus, Aaron Vandevender, David J Wineland
Abstract: The basic components for a quantum information processor using trapped ions have been demonstrated in a number of experiments. To perform complex algorithms that are not tractable with classical computers, these components need to be integrated and s ...

46. Ultra-Broadband Frequency Comb Generation in Superconducting Resonators
Topic: Quantum Information
Published: 10/30/2014
Authors: David P Pappas, Michael Robert Vissers, Martin Olof Sandberg, Jiansong Gao, Steven R Jefferts, Robert P Erickson
Abstract: Multi-octave frequency combs are generated in superconducting microresonators due to their low loss, strong Kerrlike kinetic inductance nonlinearity, and low frequency dispersion. This effect is illustrated at low frequency (60 MHz to 20 GHz) in long ...

47. Ultra-cold mechanical resonators coupled to atoms in an optical lattice
Topic: Quantum Information
Published: 9/17/2009
Authors: Andrew Geraci, John E Kitching
Abstract: We propose an experiment utilizing an array of cooled micro-cantilevers coupled to a sample of ultra-cold atoms trapped near a micro-fabricated surface. The cantilevers allow individual lattice site addressing for atomic state control and readout, an ...

48. Waveguide source of correlated photon pairs for chip-scale quantum information processing
Topic: Quantum Information
Published: 8/26/2009
Authors: Jun Chen, Aaron Pearlman, Alexander E. Ling, Jingyun Fan, Alan L Migdall
Abstract: We present a systematic study of a correlated photon-pair source based on a periodically-poled KTiOPO4 (PPKTP) waveguide. The waveguide was fabricated on a KTiOPO4 crystal supporting type-II parametric down-conversion. In addition, periodic poling ...

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