activity
20182021
most citedEnergetic and entropic effects of bath-induced coherences

40 citations · 43 across the 2 of their papers we have counts for

collaborators

7 papers

quant-ph20213 cited

Energetic advantages of non-adiabatic drives combined with non-thermal quantum states

Camille L Latune

Unitary drivings of quantum systems are ubiquitous in experiments and applications of quantum mechanics and the underlying energetic aspects, particularly relevant in quantum therm…

quant-ph2020

Collective heat capacity for quantum thermometry and quantum engine enhancements

Camille L. Latune, Ilya Sinayskiy, Francesco Petruccione

The performances of quantum thermometry in thermal equilibrium together with the output power of certain class of quantum engines share a common characteristic: both are determined…

quant-ph2019

Negative contributions to entropy production induced by quantum coherences

Camille L. Latune, Ilya Sinayskiy, Francesco Petruccione

The entropy production in dissipative processes is the essence of the arrow of time and the second law of thermodynamics. For dissipation of quantum systems, it was recently shown…

quant-ph2019

Thermodynamics from indistinguishability: mitigating and amplifying the effects of the bath

Camille L. Latune, Ilya Sinayskiy, Francesco Petruccione

Rich quantum effects emerge when several quantum systems are indistinguishable from the point of view of the bath they interact with. In particular, delocalised excitations corresp…

quant-ph2019

Heat flow reversals without reversing the arrow of time: the role of internal quantum coherences and correlations

Camille L. Latune, Ilya Sinayskiy, Francesco Petruccione

One of the stunning consequences of quantum correlations in thermodynamics is the reversal of the arrow of time, recently shown experimentally in [K. Micadei, et al., Nat. Commun.…

quant-ph201940 cited

Energetic and entropic effects of bath-induced coherences

C. L. Latune, I. Sinayskiy, F. Petruccione

The unavoidable interaction of a quantum system with its surrounding (bath) is not always detrimental for quantum properties. For instance, under some specific conditions (that we…