Quantum-coherent nanoscience

AJ Heinrich, WD Oliver, LMK Vandersypen… - Nature …, 2021 - nature.com
For the past three decades nanoscience has widely affected many areas in physics,
chemistry and engineering, and has led to numerous fundamental discoveries, as well as …

Second-order decoherence mechanisms of a transmon qubit probed with thermal microwave states

J Goetz, F Deppe, P Eder, M Fischer… - Quantum Science …, 2017 - iopscience.iop.org
Thermal microwave states are omnipresent noise sources in superconducting quantum
circuits covering all relevant frequency regimes. We use them as a probe to identify three …

[PDF][PDF] Quantum electromechanics with levitated charged particles

L Martinetz - 2023 - scholar.archive.org
Controlling the motion of levitated nanoscale objects in the quantum regime is a challenging
task with great relevance to sensing applications, quantum technologies, and fundamental …

Charge qubits in the USC regime for quantum state transfer

FA Cárdenas-López, J Yu, CK Andersen… - arxiv preprint arxiv …, 2021 - arxiv.org
We study the feasibility of reaching the ultrastrong (USC) and deep-strong coupling (DSC)
regimes of light-matter interaction, in particular at resonance condition, with a …

电荷比特的超**藕合实现及量子态转移

俞静, 周沫, 黄堂友, 郝敏佳, 陈玺 - 上海大学学报 (自然科学版), 2022 - journal.shu.edu.cn
The Cooper-pair box (CPB) capacitively coupled to an LC resonatorwas considered in a
superconducting quantum circuit that permittedthe high adjustability of light-matter …

Decoherence of Josephson charge qubit in non-Markovian environment

QQ Qiu, XF Zhou, XT Liang - Physica B: Condensed Matter, 2016 - Elsevier
In this paper we investigate the decoherence of Josephson charge qubit (JCQ) by using a
time-nonlocal (TNL) dynamical method. Three kinds of environmental models, described …

[CITATA][C] Second-order decoherence mechanisms of a transmon qubit probed with thermal microwave states

F Wulschner, E **e, KG Fedorov, A Marx, R Gross - 2017