Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group

Sub-Doppler Double-Resonance Spectroscopy of Methane Using a Frequency Comb Probe

Not Accessible

Your library or personal account may give you access

Abstract

We use a 3.3 μm continuous wave optical parametric oscillator as a pump and a 1.67 μm frequency comb as a probe to record 36 sub-Doppler double-resonance transitions in the 3v3 band of methane (including 26 previously unreported) with ~1.5 MHz center frequency accuracy

© 2020 The Author(s)

PDF Article  |   Presentation Video
More Like This
Sub-Doppler Optical-Optical Double-Resonance Spectroscopy of Methane Using a Frequency Comb Probe

Vinicius Silva de Oliveira, Isak Silander, Lucile Rutkowski, Alexandra C. Johansson, Grzegorz Soboń, Ove Axner, Kevin K. Lehmann, and Aleksandra Foltynowicz
JTu6E.2 Applied Industrial Spectroscopy (AIS) 2021

Double-Resonance Spectroscopy of Methane Using a Comb Probe

Vinicius Silva de Oliveira, Isak Silander, Lucile Rutkowski, Alexandra C. Johansson, Grzegorz Soboń, Ove Axner, Kevin K. Lehmann, and Aleksandra Foltynowicz
ed_3_1 European Quantum Electronics Conference (EQEC) 2021

Measurement and Assignment of Hot-Band Methane Transitions Using Cavity-Enhanced Comb-Based Double-Resonance Spectroscopy

Vinicius Silva de Oliveira, Isak Silander, Adrian Hjältén, Andrea Rosina, Lucile Rutkowski, Grzegorz Soboń, Ove Axner, Kevin K. Lehmann, and Aleksandra Foltynowicz
ed_4_1 European Quantum Electronics Conference (EQEC) 2023

Presentation Video

Presentation video access is available to:

  1. Optica Publishing Group subscribers
  2. Technical meeting attendees
  3. Optica members who wish to use one of their free downloads. Please download the article first. After downloading, please refresh this page.

Contact your librarian or system administrator
or
Log in to access Optica Member Subscription or free downloads


More Like This
Sub-Doppler Optical-Optical Double-Resonance Spectroscopy of Methane Using a Frequency Comb Probe

Vinicius Silva de Oliveira, Isak Silander, Lucile Rutkowski, Alexandra C. Johansson, Grzegorz Soboń, Ove Axner, Kevin K. Lehmann, and Aleksandra Foltynowicz
JTu6E.2 Applied Industrial Spectroscopy (AIS) 2021

Double-Resonance Spectroscopy of Methane Using a Comb Probe

Vinicius Silva de Oliveira, Isak Silander, Lucile Rutkowski, Alexandra C. Johansson, Grzegorz Soboń, Ove Axner, Kevin K. Lehmann, and Aleksandra Foltynowicz
ed_3_1 European Quantum Electronics Conference (EQEC) 2021

Measurement and Assignment of Hot-Band Methane Transitions Using Cavity-Enhanced Comb-Based Double-Resonance Spectroscopy

Vinicius Silva de Oliveira, Isak Silander, Adrian Hjältén, Andrea Rosina, Lucile Rutkowski, Grzegorz Soboń, Ove Axner, Kevin K. Lehmann, and Aleksandra Foltynowicz
ed_4_1 European Quantum Electronics Conference (EQEC) 2023

Optical-Optical Double-Resonance Spectroscopy of Methane Using a Cavity-Enhanced Comb Probe

Vinicius Silva de Oliveira, Isak Silander, Lucile Rutkowski, Grzegorz Soboń, Ove Axner, Kevin K. Lehmann, and Aleksandra Foltynowicz
SM1C.3 CLEO: Science and Innovations (CLEO:S&I) 2021

Cavity-Enhanced Frequency-Comb-Based Optical-Optical Double-Resonance Spectrometer

Andrea Rosina, Vinicius Silva de Oliveira, Isak Silander, Adrian Hjältén, Lucile Rutkowski, Grzegorz Soboń, Kevin K. Lehmann, and Aleksandra Foltynowicz
ed_p_4 European Quantum Electronics Conference (EQEC) 2023

Select as filters


Select Topics Cancel
© Copyright 2024 | Optica Publishing Group. All rights reserved, including rights for text and data mining and training of artificial technologies or similar technologies.