activity
20062009
most citedControlling the Ratchet Effect for Cold Atoms

65 citations · 128 across the 7 of their papers we have counts for

collaborators

7 papers

quant-ph2009

Parameter scaling in a novel measure of quantum-classical difference for decohering chaotic systems

Nathan Wiebe, Parin Sripakdeevong, Arnaldo Gammal +1

In this paper we introduce a diagnostic for measuring the quantum-classical difference for open quantum systems, which is the normalized size of the quantum terms in the Master equ…

quant-ph20095 cited

Reply to Comment on "Non-monotonicity in the Quantum-Classical Transition: Chaos Induced by Quantum Effects"

Kyle Kingsbury, Chris Amey, Arie Kapulkin +1

Response to comment by Finn et al.

quant-ph2008

Negativity of the Coarse Grained Wigner Function as a Measure of Quantal Behavior

Tyler E Keating, Adam T. C. Steege, Arjendu K. Pattanayak

The negativity of a given state's Wigner function has been proposed as a measure of quantumness of that state in a unipartite system. This otherwise physically intuitive and useful…

quant-ph200765 cited

Controlling the Ratchet Effect for Cold Atoms

Anatole Kenfack, Jiangbin Gong, Arjendu K. Pattanayak

Low-order quantum resonances manifested by directed currents have been realized with cold atoms. Here we show that by increasing the strength of an experimentally achievable delta-…

quant-ph2007

Quantum entropy dynamics for chaotic systems beyond the classical limit

Arnaldo Gammal, Arjendu K. Pattanayak

The entropy production rate for an open quantum system with a classically chaotic limit has been previously argued to be independent of and , the parameter denoting coup…

quant-ph200728 cited

Non-monotonicity in the quantum-classical transition: Chaos induced by quantum effects

Arie Kapulkin, Arjendu K. Pattanayak

The transition from classical to quantum behavior for chaotic systems is understood to be accompanied by the suppression of chaotic effects as the relative size of is incre…