Of cooling laser for magnesium ions

Taro Hasegawa, Tadao Shimizu

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

Frequency tripling of cw 840nm laser is obtained for laser cooling of magnesium ions. This beam at 280nm is expected to improve the long-term and short-term stability of optical frequency standard by laser-cooled ions. Our frequency conversion system is essentially applicable to other wavelength.

Original languageEnglish
Title of host publicationCPEM Digest (Conference on Precision Electromagnetic Measurements)
Pages208-209
Number of pages2
Publication statusPublished - 2002
Externally publishedYes
Event2002 Conference on Precision Electromagnetic Measurements - Ottawa, Ont., Canada
Duration: 2002 Jun 162002 Jun 21

Other

Other2002 Conference on Precision Electromagnetic Measurements
CountryCanada
CityOttawa, Ont.
Period02/6/1602/6/21

Fingerprint

Laser cooling
laser cooling
Magnesium
magnesium
Frequency standards
frequency standards
Lasers
frequency converters
Ions
lasers
ions
Wavelength
wavelengths

ASJC Scopus subject areas

  • Electrical and Electronic Engineering
  • Instrumentation

Cite this

Hasegawa, T., & Shimizu, T. (2002). Of cooling laser for magnesium ions. In CPEM Digest (Conference on Precision Electromagnetic Measurements) (pp. 208-209)

Of cooling laser for magnesium ions. / Hasegawa, Taro; Shimizu, Tadao.

CPEM Digest (Conference on Precision Electromagnetic Measurements). 2002. p. 208-209.

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Hasegawa, T & Shimizu, T 2002, Of cooling laser for magnesium ions. in CPEM Digest (Conference on Precision Electromagnetic Measurements). pp. 208-209, 2002 Conference on Precision Electromagnetic Measurements, Ottawa, Ont., Canada, 02/6/16.
Hasegawa T, Shimizu T. Of cooling laser for magnesium ions. In CPEM Digest (Conference on Precision Electromagnetic Measurements). 2002. p. 208-209
Hasegawa, Taro ; Shimizu, Tadao. / Of cooling laser for magnesium ions. CPEM Digest (Conference on Precision Electromagnetic Measurements). 2002. pp. 208-209
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