
We report switching of a probe laser coherently coupled to the cavity up to speeds as high as 150 MHz, limited by the RC constant of the transmission line. The coupling strength g and the …
On-Demand Single Photons with High Extraction Efficiency and …
2016年1月14日 · Here, by -shell pulsed resonant excitation of a Purcell-enhanced quantum dot-micropillar system, we deterministically generate resonance fluorescence single photons …
A hybrid single quantum dot coupled cavity on a CMOS ... - Nature
2025年2月14日 · Here we demonstrate a hybrid micro-ring resonator (HMRR) coupled with self-assembled quantum dots (QDs) for cavity-enhanced deterministic single-photon emission. The …
Resolved Sideband Emission of - Physical Review Journals
2010年7月14日 · When the acoustic frequency is larger than the QD linewidth, we resolve phonon sidebands in the QD fluorescence spectrum. Using a resonant pump laser, we have …
In this experiment, the cavity signal effectively becomes a spectrally separated readout channel for high-resolution single quantum dot spectros-copy. In addition, because the QD is …
Recent development of quantum dots@metal-organic framework …
2024年1月15日 · This detection is based on transfer of charges in the QD conduction bands to the lowest unoccupied molecular orbital of the PRL, which leads to decreased PL intensity. The …
Hybrid plasmonic nano-emitters with controlled single quantum ... - Nature
2020年7月8日 · Here, we report on the optimal overlap of antenna’s near-field and active medium whose spatial distribution is controlled via a plasmon-triggered 2-photon polymerization of a …
Exciton-polaritons confined in plasmonic cavities are hybridized light-matter quasiparticles, with distinct optical characteristics compared to plasmons and excitons alone. Here, we …
We propose a scheme to efficiently couple a single quantum dot electron spin to an optical nano-cavity, which enables us to simultaneously benefit from a cavity as an efficient photonic …
Colloidal quantum dot lasers - Nature Reviews Materials
2021年2月15日 · Semiconductor nanocrystals represent a promising class of solution-processable optical-gain media that can be manipulated via inexpensive, easily scalable colloidal techniques.