RAS Nano & ITМикроэлектроника Russian Microelectronics

  • ISSN (Print) 0544-1269
  • ISSN (Online) 3034-5480

Development of a correlator for measuring the second-order autocorrelation function of single-photon sources

PII
S30345480S0544126925040015-1
DOI
10.7868/S3034548025040015
Publication type
Article
Status
Published
Authors
Volume/ Edition
Volume 54 / Issue number 4
Pages
273-280
Abstract
A correlator for constructing the second-order autocorrelation function g(2)(τ) implemented on a field-programmable gate array (FPGA) is presented. The device is intended for high-precision recording of time intervals between photons emitted by single emitters. Using an FPGA made it possible to achieve a temporal resolution of 185 ps and real-time event processing. Experimental data confirming the achievement of photon antibunching with g(2)(0) < 0.5, which is typical for single quantum emitters, are demonstrated. The device can be used for analyzing photon correlations in tasks of quantum optics and when working with single quantum emitters.
Keywords
ПЛИС коррелятор автокорреляционная функция второго порядка NV-центр антигруппировка фотонов
Date of publication
20.05.2025
Year of publication
2025
Number of purchasers
0
Views
88

References

  1. 1. Jelezko F., Wrachtrup J. Single defect centres in diamond: A review // Physica status solidi (a). 2006. Vol. 203. No. 13. P. 3207–3225.
  2. 2. Gali A., Maze J.R. Ab initio study of the split silicon-vacancy defect in diamond: Electronic structure and related properties // Physical Review B. 2013. Vol. 88. No. 23. P. 235205. https://doi.org/10.1103/PhysRevB.88.235205
  3. 3. Brouri R., Beveratos A. et al. Photon antibunching in the fluorescence of individual color centres in diamond // Opt. Lett. – 2000. – Vol. 25, No. 17. – P. 1294–1296.
  4. 4. Lounis B., Bechtel H., Gerion D., Alivisatos P., Moerner W. Photon antibunching in single cdse/zns quantum dot fluorescence // Chemical Physics Letters. 2000. Vol. 329. No. 5–6. P. 399–404.
  5. 5. Beveratos A., Brouri R. et al. Nonclassical radiation from diamond nanocrystals // Phys. Rev. A. – 2001. – Vol. 64, No. 6. – P. 061802.
  6. 6. Hanbury Brown R., Twiss R.Q. Correlation between photons in two coherent beams of light // Nature. 1956. Vol. 177. P. 27–29.
  7. 7. Babashah H., Shirzad H., Losero E., Goblot V., Galland C., Chipaux M. Optically detected magnetic resonance with an open source platform [Электронный ресурс] // arXiv. 2022. https://doi.org/10.48550/arXiv.2205.00005
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At the Ministry of Education and Science of the Russian Federation

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