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Strong Resilience of Topological Codes to Depolarization

H. Bombin, Ruben S. Andrist, Masayuki Ohzeki, Helmut G. Katzgraber, and M. A. Martin-Delgado

Phys. Rev. X 2, 021004 (2012) - Published 30 April, 2012

Statistical mechanical models are the key to understanding the performance of error correction in topological quantum computers.

Long-Distance Spin-Spin Coupling via Floating Gates

Luka Trifunovic, Oliver Dial, Mircea Trif, James R. Wootton, Rediet Abebe, Amir Yacoby, and Daniel Loss

Phys. Rev. X 2, 011006 (2012) - Published 26 January, 2012

Semiconductor quantum dots connected by floating metallic gates point the way to a scalable quantum computer.

Quantum Correlations in Mixed-State Metrology

Kavan Modi, Hugo Cable, Mark Williamson, and Vlatko Vedral

Phys. Rev. X 1, 021022 (2011) - Published 27 December, 2011

When a quantum system is exposed to classical external noise, does the noise make it more difficult for precisions higher than the standard quantum limit to be achieved in measurements of the system’s physical quantities? Researchers from Singapore and U.K. theoretically demonstrate the opposite with a set of quantum-measurement strategies that incorporate quantum discord.

Selective Linear or Quadratic Optomechanical Coupling via Measurement

Michael R. Vanner

Phys. Rev. X 1, 021011 (2011) - Published 28 November, 2011

Optomechanics uses light to generate, manipulate, and measure the quantum motion of a mechanical device that is compliant enough to move or vibrate upon the reflection of light. Michael R. Vanner from University of Vienna proposes a new optomechanical scheme to measure the displacement squared of a mechanical device in quantum motion.

Maximum Information Gain in Weak or Continuous Measurements of Qudits: Complementarity Is Not Enough

Joshua Combes and Howard M. Wiseman

Phys. Rev. X 1, 011012 (2011) - Published 28 September, 2011

How to gain maximum information about a qudit with a maximum speed? This quantum-information paper answers the question.

Hybrid Nanocavity Resonant Enhancement of Color Center Emission in Diamond

Paul E. Barclay, Kai-Mei C. Fu, Charles Santori, Andrei Faraon, and Raymond G. Beausoleil

Phys. Rev. X 1, 011007 (2011) - Published 7 September, 2011

A new semiconductor-diamond hybrid nanophotonic structure responds to two main challenges in building up photonics-based quantum-information networks.

Landau-Zener-Stückelberg Interferometry of a Single Electronic Spin in a Noisy Environment

Pu Huang, Jingwei Zhou, Fang Fang, Xi Kong, Xiangkun Xu, Chenyong Ju, and Jiangfeng Du

Phys. Rev. X 1, 011003 (2011) - Published 8 August, 2011

Landau-Zener-Stückelberg interferometry offers a promising method for coherent control of single electronic spins in nitrogen-vacancy centers - a crucial step in exploiting the spins as qubits.

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