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Topic Area: Quantum Information and Measurements
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1. Compiling Gate Networks on an Ising Quantum Computer
Topic: Quantum Information and Measurements
Published: 9/1/2005
Authors: M. D. Bowdrey, J A Jones, Emanuel H Knill, R. Laflamme
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=150004

2. Criteria for Exact Qudit Universality
Topic: Quantum Information and Measurements
Published: 10/1/2005
Authors: Stephen Bullock, G K Brennen, Dianne M O'Leary
Abstract: The n-qubit concurrence canonical decomposition (CCD) is a generalization of the two-qubit canonical decomposition SU(4)=[SU(2) (x) SU(2)] ? [SU(2) (x) SU(2)], where ? is the commutative group which phases the maximally entangled Bell basis. A pre ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=150083

3. Dark pulse quantum dot diode laser
Topic: Quantum Information and Measurements
Published: 6/7/2010
Authors: Mingming M. Feng, Kevin Lawrence Silverman, Richard P Mirin, Steven T Cundiff
Abstract: We describe an operating regime for passively mode-locked quantum dot diode laser where the output consists of a train of dark pulses, i.e., intensity dips on a continuous background. We show that a dark pulse train is a solution to the master equati ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=907918

4. Eigenpath Traversal by Phase Randomization
Topic: Quantum Information and Measurements
Published: 9/1/2009
Authors: S. Boixo, Emanuel H Knill, Rolando Somma
Abstract: A computation in adiabatic quantum computing is achieved by traversing a path of nondegenerate eigenstates of a continuous family of Hamiltonians. We introduce a method that traverses a discretized form of the path: at each step we evolve with the i ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=901135

5. Enhanced Quantum State Detection Efficiency Through Quantum Information Processing
Topic: Quantum Information and Measurements
Published: 10/1/2005
Authors: T Schaetz, M D Barrett, D. Leibfried, J. Britton, J Chiaverini, W M Itano, J. D. Jost, Emanuel H Knill, C. Langer, David J Wineland
Abstract: The n-qubit concurrence canonical decomposition (CCD) is a generalization of the two-qubit canonical decomposition SU(4)=[SU(2) (x) SU(2)] ? [SU(2) (x) SU(2)], where ? is the commutative group which phases the maximally entangled Bell basis. A pre ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=150087

6. High Frequency Characterization of Contact Resistance and Conductivity of Platinum Nanowires*
Topic: Quantum Information and Measurements
Published: 10/1/2011
Authors: Kichul Kim, Paul Rice, Thomas M Wallis, Dazhen Gu, SangHyun Lim, Atif Imtiaz, Pavel Kabos, Dejan Filipovic
Abstract: Abstract, Individual platinum (Pt) nanowires (NWs) with 100 nm and 250 nm diameters, embedded in coplanar waveguide (CPW) structures are investigated. Three approaches for characterization of their contact resistance and conductivity at high frequenc ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=907628

7. Implementation of the Semiclassical Quantum Fourier Transform in a Scalable System
Topic: Quantum Information and Measurements
Published: 5/1/2005
Authors: J Chiaverini, J. Britton, D. Leibfried, Emanuel H Knill, M D Barrett, R. B. Blakestad, W M Itano, J. D. Jost, C. Langer, R Ozeri, T Schaetz, D Britton, David J Wineland
Abstract: The n-qubit concurrence canonical decomposition (CCD) is a generalization of the two-qubit canonical decomposition SU(4)=[SU(2) (x) SU(2)] ? [SU(2) (x) SU(2)], where ? is the commutative group which phases the maximally entangled Bell basis. A pre ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=150085

8. Liquid-state NMR Simulations of Quantum Many-body Problems
Topic: Quantum Information and Measurements
Published: 4/1/2005
Authors: C. Negrevergne, Rolando Somma, Gerardo Ortiz, Emanuel H Knill, R. Laflamme
Abstract: The n-qubit concurrence canonical decomposition (CCD) is a generalization of the two-qubit canonical decomposition SU(4)=[SU(2) (x) SU(2)] ? [SU(2) (x) SU(2)], where ? is the commutative group which phases the maximally entangled Bell basis. A pre ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=150086

9. Matrix Decompositions and Quantum Circuit Design
Topic: Quantum Information and Measurements
Published: 12/1/2004
Author: Stephen Bullock
Abstract: The n-qubit concurrence canonical decomposition (CCD) is a generalization of the two-qubit canonical decomposition SU(4)=[SU(2) (x) SU(2)] ? [SU(2) (x) SU(2)], where ? is the commutative group which phases the maximally entangled Bell basis. A pre ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=150091

10. Measurement crosstalk between two phase qubits coupled by a coplanar waveguide
Topic: Quantum Information and Measurements
Published: 9/14/2010
Authors: Fabio Altomare, Katarina Cicak, Mika A. Sillanpaa, Michael Shane Allman, Dale Li, Adam Joseph Sirois, Joshua Strong, Jae Park, Jed Douglas Whittaker, Raymond Wiley Simmonds
Abstract: We investigate measurement crosstalk in a system with two flux-biased phase qubits coupled by a resonant coplanar waveguide cavity. After qubit measurement, the superconducting phase undergoes damped oscillations in a deep anharmonic potential produc ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=904964



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