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Chip-scale sub-Doppler atomic spectroscopy enabled by a metasurface integrated photonic emitter

Optics 2024-09-23 v1 Applied Physics Atomic Physics

Abstract

We demonstrate chip-scale sub-Doppler spectroscopy in an integrated and fiber-coupled photonic-metasurface device. The device is a stack of three planar components: a photonic mode expanding grating emitter circuit with a monolithically integrated tilt compensating dielectric metasurface, a microfabricated atomic vapor cell and a mirror. The metasurface photonic circuit efficiently emits a 130 micrometer-wide 1/e21/e^2 diameter) collimated surface-normal beam with only -6.3 dB loss and couples the reflected beam back into the connecting fiber, requiring no alignment between the stacked components. We develop a simple model based on light propagation through the photonic device to interpret the atomic spectroscopy signals and explain spectral features covering the full Rb hyperfine state manifold.

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Cite

@article{arxiv.2406.07672,
  title  = {Chip-scale sub-Doppler atomic spectroscopy enabled by a metasurface integrated photonic emitter},
  author = {Alexander Yulaev and Chad Ropp and John Kitching and Vladimir A. Aksyuk and Matthew T. Hummon},
  journal= {arXiv preprint arXiv:2406.07672},
  year   = {2024}
}