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Towards a quantum interface between spin waves and paramagnetic spin baths

delete2022-02-08
delete12
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OA
AI
C
Carlos Gonzalez-Ballestero *
T
Toeno van der Sar
O
Oriol Romero‐Isart
DOI:10.1103/PhysRevB.105.075410delete
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摘要

摘要

En 中文
Spin waves have risen as promising candidate information carriers for the next generation of information technologies. Recent experimental demonstrations of their detection using electron spins in diamond pave the way towards studying the back-action of a controllable paramagnetic spin bath on the spin waves. Here, we present a macroscopic quantum theory describing the interaction between spin waves and paramagnetic spins. As a case study, we consider an ensemble of nitrogen-vacancy spins in diamond in the vicinity of an yttriumiron-garnet thin film. We show how the back-action of the ensemble results in strong and tuneable modifications of the spin wave spectrum and propagation properties. These modifications include the full suppression of spin wave propagation and, in a different parameter regime, the enhancement of their propagation length by similar to 50% for modes near resonance with the NV transition frequency. Furthermore, we show how the spin wave thermal fluctuations-even down to the quantum magnonic ground state-induce a measurable frequency shift of the paramagnetic spins in the bath. This shift results in a thermal dispersion force that can be measured optically and/or mechanically with a diamond mechanical resonator. In addition, we use our theory to compute the spin wave-mediated interaction between the spins in the bath. We show that all the above effects are measurable by state-of-the-art experiments. Our results provide the theoretical foundation for describing hybrid quantum systems of spin waves and spin baths and establish the potential of quantum spins as active control, sensing, and interfacing tools for spintronics.
Keyword:
FERROMAGNETIC-FILMS
NONLINEAR OPTICS
PROPAGATION
MAGNON
EXCITATIONS
SPECTRUM

期刊

Physical Review B 封面图
Physical Review B
IF:
3.7
论文数:
15.4W
被引数:
41.0W

机构

D
Delft University of Technology
学者数:
2.6W
论文数: 2.5W
被引数: 3.8W
A
Austrian Academy of Sciences
学者数:
5.0K
论文数: 4.0K
被引数: 8.2K
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