activity
20242026
most citedInitial demonstration of a quantum heat engine based on dissipation-engineered superconducting circuits

1 citations · 1 across the 2 of their papers we have counts for

collaborators

9 papers

quant-ph20261 cited

Initial demonstration of a quantum heat engine based on dissipation-engineered superconducting circuits

Tuomas Uusnäkki, Timm Mörstedt, Wallace Teixeira +2

Quantum heat engines require precise control over thermal reservoirs and the energies of the quantum working medium. Although superconducting circuits enable accurate engineering o…

quant-ph2026

Autonomous quantum heat engine

Tuomas Uusnäkki, Miika Rasola, Vasilii Vadimov +3

Quantum heat engines provide attractive means in quantum thermodynamics for studying the fundamentals of the flow of heat and work. Previous experimental implementations of heat en…

quant-ph2026

Quantum dial

Aashish Sah, Suman Kundu, Priyank Singh +3

Accurate control of quantum degrees of freedom is promising for sensing, communication, and computing, but building a useful quantum computer faces a central isolation-and-control…

quant-ph2026

Quantum State Certification via Effective Parent Hamiltonians from Local Measurement Data

Guy-Philippe Nadon, Guanyi Heng, Pacôme Gasnier +8

The preparation and certification of quantum states is a fundamental challenge across quantum information technology. We introduce a tomography-free state certification method that…

quant-ph2025

Proposal for an autonomous quantum heat engine

Miika Rasola, Vasilii Vadimov, Tuomas Uusnäkki +1

We propose and theoretically analyse a superconducting electric circuit which can be used to experimentally realize an autonomous quantum heat engine. Using a quasiclassical, non-M…

quant-ph2025

Computed tomography of propagating microwave photons

Qi-Ming Chen, Aarne Keränen, Aashish Sah +1

Propagating photons serve as essential links for distributing quantum information and entanglement across distant nodes. Knowledge of their Wigner functions not only enables their…