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1.
In‐Source High‐Resolution Spectroscopy Using an Integrated Tunable Raman Laser / Granados, Eduardo (CERN) ; Stoikos, Georgios (CERN) ; Bernerd, Cyril (CERN) ; Chrysalidis, Katerina (CERN) ; Echarri, Daniel T (CERN) ; Fedosseev, Valentin N (CERN) ; Heinke, Reinhard (CERN) ; Marsh, Bruce A (CERN)
Tunable single-frequency lasers are the most prominent tool for high-resolution spectroscopy, allowing for the study and exploitation of the electronic structure of atoms. A significant milestone relies on the demonstration of integrated laser technology for performing such a task. [...]
2023 - 9 p. - Published in : Laser Photonics. Rev. 18 (2023) 2300564 Fulltext: PDF;
2.
Monolithic diamond Raman resonators for high resolution spectroscopy / Stoikos, Georgios
Tunable and spectrally pure lasers at visible wavelengths are key tools for many applications in physics, metrology and quantum technology [...]
CERN-THESIS-2023-015 - 115 p.

3.
Spectral purification of single-frequency Stokes pulses in doubly resonant integrated diamond resonators / Granados, Eduardo (CERN) ; Stoikos, Georgios (CERN) ; Stoikos, Georgios (Natl. Tech. U., Athens)
Pulsed spectrally pure light is required for applications in high-resolution spectroscopy, optical coherent communications, and quantum technologies. In this work, we report on the efficient generation of high peak power, single-frequency, and tunable nanosecond pulses utilizing stimulated scattering, with an increased spectral brightness by exploiting double resonances in an integrated diamond Raman resonator. [...]
2022 - 4 p. - Published in : Opt. Lett.: 47 (2022) , no. 16, pp. 3976-3979
- Published in : Opt. Lett.: 48 (2023) , no. 2, pp. 497
4.
The influence of phonon harmonicity on spectrally pure resonant Stokes fields / Stoikos, Georgios (CERN) ; Granados, Eduardo (CERN)
Thanks to their highly coherent emission and compact form factor, single axial mode diamond Raman lasers have been identified as a valuable asset for applications including integrated quantum technology, high resolution spectroscopy or coherent optical communications. While the fundamental emission linewidth of these lasers can be Fourier limited, their thermo-optic characteristics lead to drifts in their carrier frequency, posing important challenges for applications requiring ultra-stable emission. [...]
arXiv:2204.11255.- 2022-08-03 - 9 p. - Published in : Phys. Rev. A 106 (2022) 023504 Fulltext: PDF;

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1 Stoikos, G
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