Incoherent Measurement of Sub-10 kHz Optical Linewidths
arXiv:2411.06532 · doi:10.1103/xkp5-v9m8
Abstract
Quantum state lifetimes , or equivalently homogeneous linewidths , are a key parameter for understanding decoherence processes in quantum systems and assessing their potential for applications in quantum technologies. The most common tool for measuring narrow optical homogeneous linewidths, i.e. long , is the measurement of coherent photon echo emissions, which however gives very weak signal when the number of emitters is small. This strongly hampers the development of nano-materials, such as those based on rare earth ions, for quantum communication and processing. In this work we propose, and demonstrate in an erbium doped crystal, a measurement of photon echoes based on incoherent fluorescence detection and its variance analysis. It gives access to through a much larger signal than direct photon echo detection, and, importantly, without the need for a highly coherent laser. Our results thus open the way to efficiently assess the properties of a broad range of emitters and materials for applications in quantum nano-photonics.
6 pages, 3 figures
References in corpus (11)
- Room temperature quantum bit storage exceeding 39 minutes using ionized donors in 28-silicon
- Telecom-heralded entanglement between remote multimode solid-state quantum memories
- Indistinguishable telecom band photons from a single erbium ion in the solid state
- Remote distribution of non-classical correlations over 1250 modes between a telecom photon and a Yb:YSiO crystal
- Narrow optical transitions in erbium-implanted silicon waveguides
- Nonlocal photonic quantum gates over 7.0 km
- Spectral multiplexing of telecom emitters with stable transition frequency
- Detection of single ions in a nanoparticle coupled to a fiber cavity
- Superhyperfine induced photon-echo collapse of erbium in YSiO
- Demonstration of site-selective angular-resolved absorption spectroscopy of the erbium transition in the monoclinic crystal YSiO
- Microwave-optical double resonance in a erbium-doped whispering-gallery-mode resonator