collaborators
Showing quant-phShow all

7 papers · 1 filter

quant-ph2025

Dissipation and noise in strongly driven Josephson junctions

Vasilii Vadimov, Yoshiki Sunada, Mikko Möttönen

In circuit quantum electrodynamical systems, the quasiparticle-related losses in Josephson junctions are suppressed due to the gap in the superconducting density of states which is…

quant-ph2025

Correlation measurement of propagating microwave photons at millikelvin

Aarne Keränen, Qi-Ming Chen, András Gunyhó +5

Microwave photons are important carriers of quantum information in many promising platforms for quantum computing. They can be routinely generated, controlled, and teleported in ex…

quant-ph2025

Nonlinear response theory for lossy superconducting quantum circuits

V. Vadimov, M. Xu, J. T. Stockburger +2

We introduce a numerically exact and computationally feasible nonlinear-response theory developed for lossy superconducting quantum circuits based on a framework of quantum dissipa…

quant-ph2025

Methods to achieve near-millisecond energy relaxation and dephasing times for a superconducting transmon qubit

Mikko Tuokkola, Yoshiki Sunada, Heidi Kivijärvi +6

Superconducting qubits are one of the most promising physical systems for implementing quantum computers. However, executing quantum algorithms of practical computational advantage…

quant-ph2024

Low-characteristic-impedance superconducting tadpole resonators in the sub-gigahertz regime

Miika Rasola, Samuel Klaver, Jian Ma +4

We demonstrate a simple and versatile resonator design based on a short strip of a typical coplanar waveguide shorted at one end to the ground and shunted at the other end with a l…

quant-ph2024

Decay-protected superconducting qubit with fast control enabled by integrated on-chip filters

Aashish Sah, Suman Kundu, Heikki Suominen +2

Achieving fast gates and long coherence times for superconducting qubits presents challenges, typically requiring either a stronger coupling of the drive line or an excessively str…