most citedQuantum work statistics at strong reservoir coupling

6 citations · 6 across the 1 of their papers we have counts for

collaborators

6 papers

quant-ph20266 cited

Quantum work statistics at strong reservoir coupling

Owen Diba, Harry J. D. Miller, Jake Iles-Smith +1

Determining the statistics of work done on a quantum system while strongly coupled to a reservoir is a formidable task, requiring the calculation of the full eigenspectrum of the c…

quant-ph2026

Arbitrary gauge quantisation of light-matter theories with time-dependent constraints

Adam Stokes, Ahsan Nazir

We provide a general framework for the quantisation of light-matter theories with time-dependent holonomic constraints. Unless time dependence is present from the outset at the Lag…

quant-ph2025

Numerically exact open quantum system work statistics with process tensors

Mike Shubrook, Moritz Cygorek, Erik Gauger +2

Accurately quantifying the thermodynamic work costs of quantum operations is essential for the continued development and optimisation of emerging quantum technologies. This present…

quant-ph2025

A Markovian approach to -photon correlations beyond the quantum regression theorem

Mateusz Salamon, Oliver Dudgeon, Ahsan Nazir +1

Multi-photon correlations from quantum emitters coupled to vibrational environments lie beyond the reach of standard tools such as the quantum regression theorem (QRT). Here, we in…

quant-ph2025

Non-Markovian Quantum Heat Statistics with the Reaction Coordinate Mapping

Mike Shubrook, Jake Iles-Smith, Ahsan Nazir

The definition of heat in quantum mechanics is ambiguous. Complications arise in particular when the coupling between a quantum system and a thermal environment is non-negligible,…

quant-ph2025

Cauchy-Schwarz bound on the accuracy of truncated models in non-relativistic quantum electrodynamics

Daniel Eyles, Adam Stokes, Ahsan Nazir

We show that the Cauchy-Schwarz inequality provides a simple yet general bound that limits the accuracy of light-matter theories which retain only finite numbers of material energy…