_version_ 1866916679429128192
author Barbarat, Joannès
Benkler, Erik
Bober, Marcin
Clivati, Cecilia
Dickmann, Johannes
Fang, Bess
Fluhr, Christophe
Fordell, Thomas
Gillot, Jonathan
Giordano, Vincent
Gustavsson, David
Hanhijärvi, Kalle
Hartman, Michael
Herbers, Sofia
Jaros, Angelina
Kawohl, Jan
Kersalé, Yann
Kroker, Stefanie
Kwong, Chang Jian
Lacroûte, Clément
Targat, Rodolphe Le
Legero, Thomas
Lindén, Marcus
Lindvall, Thomas
Lodewyck, Jérôme
Ma, Chun Yu
Meyer, Rémi
Morzyński, Piotr
Millo, Jacques
Narożnik, Mateusz
Nicolodi, Daniele
Penza, Alessia
Pointard, Benjamin
Rippe, Lars
Risaro, Matias
Roset, Pierre
Sauer, Steffen
Savio, Paolo
Schiller, Stephan
Neto, Liam Shelling
Sterr, Uwe
Vartehparvar, Omid
Vogt, Victor
Wagner, Nico
Wallin, Anders E.
Wiens, Eugen
Yu, Jialiang
Zawada, Michał
Zelan, Martin
author_facet Barbarat, Joannès
Benkler, Erik
Bober, Marcin
Clivati, Cecilia
Dickmann, Johannes
Fang, Bess
Fluhr, Christophe
Fordell, Thomas
Gillot, Jonathan
Giordano, Vincent
Gustavsson, David
Hanhijärvi, Kalle
Hartman, Michael
Herbers, Sofia
Jaros, Angelina
Kawohl, Jan
Kersalé, Yann
Kroker, Stefanie
Kwong, Chang Jian
Lacroûte, Clément
Targat, Rodolphe Le
Legero, Thomas
Lindén, Marcus
Lindvall, Thomas
Lodewyck, Jérôme
Ma, Chun Yu
Meyer, Rémi
Morzyński, Piotr
Millo, Jacques
Narożnik, Mateusz
Nicolodi, Daniele
Penza, Alessia
Pointard, Benjamin
Rippe, Lars
Risaro, Matias
Roset, Pierre
Sauer, Steffen
Savio, Paolo
Schiller, Stephan
Neto, Liam Shelling
Sterr, Uwe
Vartehparvar, Omid
Vogt, Victor
Wagner, Nico
Wallin, Anders E.
Wiens, Eugen
Yu, Jialiang
Zawada, Michał
Zelan, Martin
contents Lasers with long coherence time and narrow linewidth are an essential tool for quantum sensors and clocks. Ultrastable cavities and laser systems are now commercially available with fractional frequency instabilities in the mid $10^{-16}$ range. This document aims to provide technical guidance for researchers starting in the field of ultrastable lasers and to give an outlook toward the next generation of improved ultrastable lasers. These guidelines have arisen from the scope of the EMPIR project ``Next generation ultrastable lasers'' ( https://www.ptb.de/empir2021/nextlasers ) with contributions from the European project partners.
format Preprint
id arxiv_https___arxiv_org_abs_2504_06213
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Guidelines for designs for ultrastable laser with $\mathbf{10^{-17}}$ fractional frequency instability
Barbarat, Joannès
Benkler, Erik
Bober, Marcin
Clivati, Cecilia
Dickmann, Johannes
Fang, Bess
Fluhr, Christophe
Fordell, Thomas
Gillot, Jonathan
Giordano, Vincent
Gustavsson, David
Hanhijärvi, Kalle
Hartman, Michael
Herbers, Sofia
Jaros, Angelina
Kawohl, Jan
Kersalé, Yann
Kroker, Stefanie
Kwong, Chang Jian
Lacroûte, Clément
Targat, Rodolphe Le
Legero, Thomas
Lindén, Marcus
Lindvall, Thomas
Lodewyck, Jérôme
Ma, Chun Yu
Meyer, Rémi
Morzyński, Piotr
Millo, Jacques
Narożnik, Mateusz
Nicolodi, Daniele
Penza, Alessia
Pointard, Benjamin
Rippe, Lars
Risaro, Matias
Roset, Pierre
Sauer, Steffen
Savio, Paolo
Schiller, Stephan
Neto, Liam Shelling
Sterr, Uwe
Vartehparvar, Omid
Vogt, Victor
Wagner, Nico
Wallin, Anders E.
Wiens, Eugen
Yu, Jialiang
Zawada, Michał
Zelan, Martin
Optics
Instrumentation and Detectors
Lasers with long coherence time and narrow linewidth are an essential tool for quantum sensors and clocks. Ultrastable cavities and laser systems are now commercially available with fractional frequency instabilities in the mid $10^{-16}$ range. This document aims to provide technical guidance for researchers starting in the field of ultrastable lasers and to give an outlook toward the next generation of improved ultrastable lasers. These guidelines have arisen from the scope of the EMPIR project ``Next generation ultrastable lasers'' ( https://www.ptb.de/empir2021/nextlasers ) with contributions from the European project partners.
title Guidelines for designs for ultrastable laser with $\mathbf{10^{-17}}$ fractional frequency instability
topic Optics
Instrumentation and Detectors
url https://arxiv.org/abs/2504.06213