Tailoring sub-Doppler spectra of thermal atoms with a dielectric optical metasurface chip

Fuente: arXiv
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Main Authors: Zhang, Dengke, Qing, Chen
Format: Preprint
Published: 2023
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author Zhang, Dengke
Qing, Chen
author_facet Zhang, Dengke
Qing, Chen
contents Compact and robust structures to precisely control and acquire atomic spectra are increasingly important for the pursuit of widespread applications. Sub-Doppler responses of thermal atoms are critical in constructing high-precision devices and systems. In this study, we designed a nanograting metasurface specifically for atomic rubidium vapor and integrated it into a miniature vapor cell. Using the metasurface with built-in multifunctional controls for light, we established pump-probe atomic spectroscopy and experimentally observed sub-Doppler responses at low incident power. Moreover, the sub-Doppler lineshape can be tailored by varying the incident polarization state. The spectrum transformation from absorption to transparency was observed. Using one of the sharp responses, laser stabilization with a stability of $3\times10^{-10}$ at 2 s can be achieved. Our work reveals the effective control of atomic spectra with optical metasurface chips, which may have great potential for future developments in fundamental optics and novel optical applications.
format Preprint
id arxiv_https___arxiv_org_abs_2312_13325
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Tailoring sub-Doppler spectra of thermal atoms with a dielectric optical metasurface chip
Zhang, Dengke
Qing, Chen
Optics
Atomic Physics
Compact and robust structures to precisely control and acquire atomic spectra are increasingly important for the pursuit of widespread applications. Sub-Doppler responses of thermal atoms are critical in constructing high-precision devices and systems. In this study, we designed a nanograting metasurface specifically for atomic rubidium vapor and integrated it into a miniature vapor cell. Using the metasurface with built-in multifunctional controls for light, we established pump-probe atomic spectroscopy and experimentally observed sub-Doppler responses at low incident power. Moreover, the sub-Doppler lineshape can be tailored by varying the incident polarization state. The spectrum transformation from absorption to transparency was observed. Using one of the sharp responses, laser stabilization with a stability of $3\times10^{-10}$ at 2 s can be achieved. Our work reveals the effective control of atomic spectra with optical metasurface chips, which may have great potential for future developments in fundamental optics and novel optical applications.
title Tailoring sub-Doppler spectra of thermal atoms with a dielectric optical metasurface chip
topic Optics
Atomic Physics
url https://arxiv.org/abs/2312.13325