Crossover from inhomogeneous to homogeneous response of a resonantly driven hBN quantum emitter

Fuente: arXiv
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Main Authors: Gérard, Domitille, Buil, Stéphanie, Hermier, Jean-Pierre, Delteil, Aymeric
Format: Preprint
Published: 2024
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author Gérard, Domitille
Buil, Stéphanie
Hermier, Jean-Pierre
Delteil, Aymeric
author_facet Gérard, Domitille
Buil, Stéphanie
Hermier, Jean-Pierre
Delteil, Aymeric
contents We experimentally investigate a solid-state quantum emitter - a B center in hexagonal boron nitride (hBN) - that has lifetime-limited coherence at short times, and experiences inhomogeneous broadening due to spectral diffusion at longer times. By making use of power broadening in resonant laser excitation, we explore the crossover between the inhomogeneous and the homogeneous broadening regimes. With the support of numerical simulations, we show that the lineshape, count rate, second-order correlations and long-time photon statistics evolve from a regime where they are dictated by spectral diffusion to a regime where they are simply given by the homogeneous response of the emitter, yielding restored Lorentzian shape and Poissonian photon statistics. Saturation of the count rate and line broadening occur not at the onset of the Rabi oscillations, but when the power-broadened homogeneous response becomes comparable with the inhomogeneous linewidth. Moreover, we identify specific signatures in both the second-order correlations and long-time photon statistics that are well explained by a microscopic spectral diffusion model based on discrete jumps at timescales of micro- to milliseconds. Our work provides an extensive description of the photophysics of B-centers under resonant excitation, and can be readily extended to a wide variety of solid-state quantum emitters.
format Preprint
id arxiv_https___arxiv_org_abs_2411_07202
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Crossover from inhomogeneous to homogeneous response of a resonantly driven hBN quantum emitter
Gérard, Domitille
Buil, Stéphanie
Hermier, Jean-Pierre
Delteil, Aymeric
Optics
We experimentally investigate a solid-state quantum emitter - a B center in hexagonal boron nitride (hBN) - that has lifetime-limited coherence at short times, and experiences inhomogeneous broadening due to spectral diffusion at longer times. By making use of power broadening in resonant laser excitation, we explore the crossover between the inhomogeneous and the homogeneous broadening regimes. With the support of numerical simulations, we show that the lineshape, count rate, second-order correlations and long-time photon statistics evolve from a regime where they are dictated by spectral diffusion to a regime where they are simply given by the homogeneous response of the emitter, yielding restored Lorentzian shape and Poissonian photon statistics. Saturation of the count rate and line broadening occur not at the onset of the Rabi oscillations, but when the power-broadened homogeneous response becomes comparable with the inhomogeneous linewidth. Moreover, we identify specific signatures in both the second-order correlations and long-time photon statistics that are well explained by a microscopic spectral diffusion model based on discrete jumps at timescales of micro- to milliseconds. Our work provides an extensive description of the photophysics of B-centers under resonant excitation, and can be readily extended to a wide variety of solid-state quantum emitters.
title Crossover from inhomogeneous to homogeneous response of a resonantly driven hBN quantum emitter
topic Optics
url https://arxiv.org/abs/2411.07202