Molecules with a one octave frequency domain for the measurement of the 1-fs optical pulse width

Tomoko Imasaka, Totaro Imasaka

研究成果: 著書/レポートタイプへの貢献会議での発言

抄録

Tetraazacrown was useful for measuring a >1.6-fs pulse in the ultraviolet region and aliphatic hydrocarbon for a >0.96-fs pulse in the far-ultraviolet region using an autocorrelator consisting of a mass spectrometer as a two-photon-response detector.

元の言語英語
ホスト出版物のタイトルQuantum Electronics and Laser Science Conference, QELS 2012
出版物ステータス出版済み - 2012
イベントQuantum Electronics and Laser Science Conference, QELS 2012 - San Jose, CA, 米国
継続期間: 5 6 20125 11 2012

その他

その他Quantum Electronics and Laser Science Conference, QELS 2012
米国
San Jose, CA
期間5/6/125/11/12

Fingerprint

octaves
Mass spectrometers
Laser pulses
pulse duration
Photons
Hydrocarbons
Detectors
aliphatic hydrocarbons
Molecules
pulses
mass spectrometers
molecules
hydrocarbons
detectors
photons

All Science Journal Classification (ASJC) codes

  • Instrumentation
  • Atomic and Molecular Physics, and Optics

これを引用

Imasaka, T., & Imasaka, T. (2012). Molecules with a one octave frequency domain for the measurement of the 1-fs optical pulse width. : Quantum Electronics and Laser Science Conference, QELS 2012

Molecules with a one octave frequency domain for the measurement of the 1-fs optical pulse width. / Imasaka, Tomoko; Imasaka, Totaro.

Quantum Electronics and Laser Science Conference, QELS 2012. 2012.

研究成果: 著書/レポートタイプへの貢献会議での発言

Imasaka, T & Imasaka, T 2012, Molecules with a one octave frequency domain for the measurement of the 1-fs optical pulse width. : Quantum Electronics and Laser Science Conference, QELS 2012. Quantum Electronics and Laser Science Conference, QELS 2012, San Jose, CA, 米国, 5/6/12.
Imasaka T, Imasaka T. Molecules with a one octave frequency domain for the measurement of the 1-fs optical pulse width. : Quantum Electronics and Laser Science Conference, QELS 2012. 2012
Imasaka, Tomoko ; Imasaka, Totaro. / Molecules with a one octave frequency domain for the measurement of the 1-fs optical pulse width. Quantum Electronics and Laser Science Conference, QELS 2012. 2012.
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