activity
20102013
most citedThe Rise and Fall of Redundancy in Decoherence and Quantum Darwinism

78 citations · 182 across the 3 of their papers we have counts for

collaborators

6 papers

quant-ph2013★ 46 cited

Amplification, Redundancy, and the Quantum Chernoff Information

Michael Zwolak, C. Jess Riedel, Wojciech H. Zurek

Amplification was regarded, since the early days of quantum theory, as a mysterious ingredient that endows quantum microstates with macroscopic consequences, key to the "collapse o…

quant-ph2013★ 58 cited

The Objective Past of a Quantum Universe: Redundant Records of Consistent Histories

C. Jess Riedel, Wojciech H. Zurek, Michael Zwolak

Motivated by the advances of quantum Darwinism and recognizing the role played by redundancy in identifying the small subset of quantum states with resilience characteristic of obj…

quant-ph2012

Direct Detection of Classically Undetectable Dark Matter through Quantum Decoherence

C. Jess Riedel

Although various pieces of indirect evidence about the nature of dark matter have been collected, its direct detection has eluded experimental searches despite extensive effort. If…

quant-ph2012★ 78 cited

The Rise and Fall of Redundancy in Decoherence and Quantum Darwinism

C. Jess Riedel, Wojciech H. Zurek, Michael Zwolak

A state selected at random from the Hilbert space of a many-body system is overwhelmingly likely to exhibit highly non-classical correlations. For these typical states, half of the…

quant-ph2011

Redundant Information from Thermal Illumination: Quantum Darwinism in Scattered Photons

C. Jess Riedel, Wojciech H. Zurek

We study quantum Darwinism, the redundant recording of information about the preferred states of a decohering system by its environment, for an object illuminated by a blackbody. W…

quant-ph2010

Quantum Darwinism in an Everyday Environment: Huge Redundancy in Scattered Photons

C. Jess Riedel, Wojciech H. Zurek

We study quantum Darwinism--the redundant recording of information about the preferred states of a decohering system by its environment--for an object illuminated by a black body.…