A Versatile Source of Single Photons for Quantum Information Processing
Michael F\"ortsch, Josef F\"urst, Christoffer Wittmann, Dmitry, Strekalov, Andrea Aiello, Maria V. Chekhova, Christine Silberhorn, Gerd, Leuchs, Christoph Marquardt

TL;DR
This paper presents a stable, tunable, and efficient single photon and photon pair source based on whispering gallery resonators, enabling compatibility across various quantum systems for advanced quantum information applications.
Contribution
The authors demonstrate a versatile, lithium niobate whispering gallery resonator that produces tunable, high-efficiency single photons and photon pairs suitable for diverse quantum technologies.
Findings
Wavelength tuning over 100 nm achieved
Photon pairs generated with bandwidths between 7.2 and 13 MHz
Heralded single photons exhibit anti-bunching with g^{(2)}(0) < 0.2
Abstract
The quantum state of a single photon stands among the most fundamental and intriguing manifestations of quantum physics. At the same time single photons and pairs of single photons are important building blocks in the fields of linear optical based quantum computation and quantum repeater infrastructure. These fields possess enormous potential and much scientific and technological progress has been made in developing individual components, like quantum memories and photon sources using various physical implementations. However, further progress suffers from the lack of compatibility between these different components. Ultimately, one aims for a versatile source of single photons and photon pairs in order to overcome this hurdle of incompatibility. Such a photon source should allow for tuning of the spectral properties (wide wavelength range and narrow bandwidth) to address different…
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