output
20202022
most citedFirst-principles identification of single photon emitters based on carbon clusters in hexagonal boron nitride

121 citations

20 papers

quant-ph2022★ 4 cited

Deterministic single-photon source in the ultrastrong coupling regime

Jie Peng, Jianing Tang, Pinghua Tang +7

Deterministic single-photon sources are important and ubiquitous in quantum information protocols. However, to the best of our knowledge, none of them work in the ultrastrong light…

quant-ph2022★ 3 cited

Stable many-body resonances in open quantum systems

Ruben Peña, Thi Ha Kyaw, Guillermo Romero

Periodically driven quantum many-body systems exhibit novel nonequilibrium states such as prethermalization, discrete time crystals, and many-body localization. Recently, the gener…

cond-mat.mes-hall2022★ 14 cited

Domain wall damped harmonic oscillations induced by curvature gradients in elliptical magnetic nanowires

G. H. R. Bittencourt, S. Castillo-Sepúlveda, O. Chubykalo-Fesenko +3

Understanding the domain wall (DW) dynamics in magnetic nanowires (NW) is crucial for spintronic-based applications demanding the use of DWs as information carriers. This work focu…

quant-ph2021★ 7 cited

Swap Test with Quantum-Dot Charge Qubits

Y. -D. Li, N. Barraza, G. Alvarado Barrios +2

We propose the implementation of the Swap Test using a charge qubit in a double quantum dot. The Swap Test is a fundamental quantum subroutine in quantum machine learning and other…

quant-ph2021★ 11 cited

Quantum Memristors with Quantum Computers

Y. -M. Guo, F. Albarrán-Arriagada, H. Alaeian +2

We propose the encoding of memristive quantum dynamics on a digital quantum computer. Using a set of auxiliary qubits, we simulate an effective non-Markovian environment inspired b…

cond-mat.mes-hall2021★ 6 cited

Parametric resonance of spin waves in ferromagnetic nanowires tuned by spin Hall torque

Liu Yang, Alejandro A. Jara, Zheng Duan +4

We present a joint experimental and theoretical study of parametric resonance of spin wave eigenmodes in NiFe/Pt bilayer nanowires. Using electrically detected magnet…