activity
20122022
most citedPerformance bound for quantum absorption refrigerators

186 citations · 207 across the 3 of their papers we have counts for

collaborators
Showing quant-phShow all

6 papers · 1 filter

quant-ph2022

Bending the rules of low-temperature thermometry with periodic driving

Jonas Glatthard, Luis A. Correa

There exist severe limitations on the accuracy of low-temperature thermometry, which poses a major challenge for future quantum-technological applications. Low-temperature sensitiv…

quant-ph2020

Global Quantum Thermometry

Jesús Rubio, Janet Anders, Luis A. Correa

A paradigm shift in quantum thermometry is proposed. To date, thermometry has relied on local estimation, which is useful to reduce statistical fluctuations once the temperature is…

quant-ph2019

Pushing the limits of the reaction-coordinate mapping

Luis A. Correa, Buqing Xu, Benjamin Morris +1

The reaction-coordinate mapping is a useful technique to study complex quantum dissipative dynamics into structured environments. In essence, it aims to mimic the original problem…

quant-ph201921 cited

Wigner entropy production and heat transport in linear quantum lattices

William T. B. Malouf, Jader P. Santos, Luis A. Correa +2

When a quantum system is coupled to several heat baths at different temperatures, it eventually reaches a non-equilibrium steady state featuring stationary internal heat currents.…

quant-ph2018

Thermometry in the quantum regime: Recent theoretical progress

Mohammad Mehboudi, Anna Sanpera, Luis A. Correa

Controlling and measuring the temperature in different devices and platforms that operate in the quantum regime is, without any doubt, essential for any potential application. In t…

quant-ph2012186 cited

Performance bound for quantum absorption refrigerators

Luis A. Correa, José P. Palao, Gerardo Adesso +1

An implementation of quantum absorption chillers with three qubits has been recently proposed, that is ideally able to reach the Carnot performance regime. Here we study the workin…