A Chip‐Scale Optical Frequency Reference for the Telecommunication Band Based on Acetylene. Issue 6 (11th May 2020)
- Record Type:
- Journal Article
- Title:
- A Chip‐Scale Optical Frequency Reference for the Telecommunication Band Based on Acetylene. Issue 6 (11th May 2020)
- Main Title:
- A Chip‐Scale Optical Frequency Reference for the Telecommunication Band Based on Acetylene
- Authors:
- Zektzer, Roy
Hummon, Matthew T.
Stern, Liron
Sebbag, Yoel
Barash, Yefim
Mazurski, Noa
Kitching, John
Levy, Uriel - Abstract:
- Abstract: Lasers precisely stabilized to known transitions between energy levels in simple, well‐isolated quantum systems such as atoms and molecules are essential for a plethora of applications in metrology and optical communications. The implementation of such spectroscopic systems in a chip‐scale format would allow to reduce cost dramatically and would open up new opportunities in both photonically integrated platforms and free‐space applications such as lidar. Here the design, fabrication, and experimental characterization of a molecular cladded waveguide platform based on the integration of serpentine nanoscale photonic waveguides with a miniaturized acetylene chamber is presented. The goal of this platform is to enable cost‐effective, miniaturized, and low power optical frequency references in the telecommunications C band. Finally, this platform is used to stabilize a 1.5 µm laser with a precision better than 400 kHz at 34 s. The molecular cladded waveguide platform introduced here could be integrated with components such as on‐chip modulators, detectors, and other devices to form a complete on‐chip laser stabilization system. Abstract : In recent years there has been a major effort toward the development of miniaturized and stable laser systems. Herein, a unified photonic–molecular system in which acetylene resonances are coupled to a photonic waveguide is developed and demonstrated. The system provides a narrow and stable absorption signal to which a telecom laserAbstract: Lasers precisely stabilized to known transitions between energy levels in simple, well‐isolated quantum systems such as atoms and molecules are essential for a plethora of applications in metrology and optical communications. The implementation of such spectroscopic systems in a chip‐scale format would allow to reduce cost dramatically and would open up new opportunities in both photonically integrated platforms and free‐space applications such as lidar. Here the design, fabrication, and experimental characterization of a molecular cladded waveguide platform based on the integration of serpentine nanoscale photonic waveguides with a miniaturized acetylene chamber is presented. The goal of this platform is to enable cost‐effective, miniaturized, and low power optical frequency references in the telecommunications C band. Finally, this platform is used to stabilize a 1.5 µm laser with a precision better than 400 kHz at 34 s. The molecular cladded waveguide platform introduced here could be integrated with components such as on‐chip modulators, detectors, and other devices to form a complete on‐chip laser stabilization system. Abstract : In recent years there has been a major effort toward the development of miniaturized and stable laser systems. Herein, a unified photonic–molecular system in which acetylene resonances are coupled to a photonic waveguide is developed and demonstrated. The system provides a narrow and stable absorption signal to which a telecom laser frequency is stabilized to less than 400 kHz at 34 s. … (more)
- Is Part Of:
- Laser & photonics reviews. Volume 14:Issue 6(2020)
- Journal:
- Laser & photonics reviews
- Issue:
- Volume 14:Issue 6(2020)
- Issue Display:
- Volume 14, Issue 6 (2020)
- Year:
- 2020
- Volume:
- 14
- Issue:
- 6
- Issue Sort Value:
- 2020-0014-0006-0000
- Page Start:
- n/a
- Page End:
- n/a
- Publication Date:
- 2020-05-11
- Subjects:
- frequency references -- metrology -- molecular physics -- nanophotonics
Lasers -- Periodicals
Photonics -- Periodicals
Lasers -- Périodiques
Photonique -- Périodiques
621.36 - Journal URLs:
- http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)1863-8899 ↗
http://www3.interscience.wiley.com/cgi-bin/jtoc/113511747/ ↗
http://onlinelibrary.wiley.com/ ↗ - DOI:
- 10.1002/lpor.201900414 ↗
- Languages:
- English
- ISSNs:
- 1863-8880
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 5156.518880
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- 13134.xml