4.6 Article

Spin-noise spectroscopy of a spin-one system

相关参考文献

注意:仅列出部分参考文献,下载原文获取全部文献信息。
Article Optics

Spin-noise spectroscopy of optical light shifts

J. Delpy et al.

Summary: Light-induced nonequilibrium spin-noise spectroscopy is demonstrated to be an efficient technique for probing the structure and coherent effects in a transition. Metastable helium is used to show a dual-peak structure in the spin-noise spectrum around the Larmor frequency. The split spectra can be well reproduced by both numerical and analytical models, enabling a direct measurement of light shifts and level structure.

PHYSICAL REVIEW A (2023)

Article Physics, Multidisciplinary

Birefringence and dichroism effects in the spin noise spectra of a spin-1 system

S. Liu et al.

Summary: In this study, spin noise spectroscopy experiments were performed on metastable helium atoms at room temperature. It was found that both circular and linear birefringence fluctuations were present, and two noise resonances were isolated at the Larmor frequency and at twice the Larmor frequency, depending on the orientation of the probe field polarization. The simple structure of metastable helium allowed for the probing and modeling of these peak behaviors in terms of circular and linear dichroisms and birefringences as well as spin oscillation modes.

NEW JOURNAL OF PHYSICS (2022)

Article Optics

Raman scattering model of the spin noise

G. G. Kozlov et al.

Summary: This paper analyzes the mechanism of the formation of polarimetric signals observed in spin noise spectroscopy from the perspective of light scattering theory, and presents a rigorous calculation of the polarimetric signals recorded in SNS in the single scattering approximation. It is shown that the noise in SNS is most accurately considered as a result of scattering of the probe light beam by fluctuating susceptibility of the medium. Fluctuations of the gyrotropic part of the susceptibility tensor lead to Faraday rotation noise at the Larmor frequency, while fluctuations of linear anisotropy of the medium give rise to ellipticity noise at the double Larmor frequency. The theoretical analysis results are in good agreement with experimental data on ellipticity noise in cesium vapor.

OPTICS EXPRESS (2021)

Article Physics, Multidisciplinary

Spin-alignment noise in atomic vapor

A. A. Fomin et al.

PHYSICAL REVIEW RESEARCH (2020)

Article Multidisciplinary Sciences

Excitation and coherent control of spin qudit modes in silicon carbide at room temperature

V. A. Soltamov et al.

NATURE COMMUNICATIONS (2019)

Article Optics

Quantum metrology with a transmon qutrit

A. R. Shlyakhov et al.

PHYSICAL REVIEW A (2018)

Article Optics

Linear optics, Raman scattering, and spin noise spectroscopy

M. M. Glazov et al.

OPTICS EXPRESS (2015)

Article Multidisciplinary Sciences

Atomic-like spin noise in solid-state demonstrated with manganese in cadmium telluride

S. Cronenberger et al.

NATURE COMMUNICATIONS (2015)

Article Multidisciplinary Sciences

Cross-correlation spin noise spectroscopy of heterogeneous interacting spin systems

Dibyendu Roy et al.

SCIENTIFIC REPORTS (2015)

Article Physics, Multidisciplinary

Quantum atom-light interfaces in the Gaussian description for spin-1 systems

Giorgio Colangelo et al.

NEW JOURNAL OF PHYSICS (2013)

Article Physics, Multidisciplinary

Optical Spectroscopy of Spin Noise

V. S. Zapasskii et al.

PHYSICAL REVIEW LETTERS (2013)

Article Optics

Spin-noise spectroscopy: from proof of principle to applications

Valerii S. Zapasskii

ADVANCES IN OPTICS AND PHOTONICS (2013)

Article Physics, Multidisciplinary

Spin Noise of Electrons and Holes in Self-Assembled Quantum Dots

S. A. Crooker et al.

PHYSICAL REVIEW LETTERS (2010)

Article Physics, Multidisciplinary

Spin squeezing of atomic ensembles via nuclear-electronic spin entanglement

T. Fernholz et al.

PHYSICAL REVIEW LETTERS (2008)

Article Physics, Multidisciplinary

Spin noise spectroscopy in GaAs -: art. no. 216603

M Oestreich et al.

PHYSICAL REVIEW LETTERS (2005)

Article Physics, Multidisciplinary

Spontaneous noise spectroscopy of an atomic magnetic resonance

T Mitsui

PHYSICAL REVIEW LETTERS (2000)