Liu et al., 2023 - Google Patents
Research on stabilization of the frequency of a single longitude mode optical fiber laserLiu et al., 2023
- Document ID
- 7439509848625650979
- Author
- Liu Z
- Xie F
- Ma H
- Publication year
- Publication venue
- Optik
External Links
Snippet
An optical fiber laser that can continuously emit high stable single frequency laser is researched. The resonant cavity of the optical fiber laser is a compound ring resonator which is made with double sub ring resonant cavities sharing almost the same optical path. By …
Classifications
-
- H—ELECTRICITY
- H01—BASIC ELECTRIC ELEMENTS
- H01S—DEVICES USING STIMULATED EMISSION
- H01S3/00—Lasers, i.e. devices for generation, amplification, modulation, demodulation, or frequency-changing, using stimulated emission, of infra-red, visible, or ultra-violet waves
- H01S3/05—Construction or shape of optical resonators; Accomodation of active medium therein; Shape of active medium
- H01S3/08—Construction or shape of optical resonators or components thereof
- H01S3/08018—Mode suppression
- H01S3/08022—Longitudinal mode control, e.g. specifically multimode
- H01S3/08031—Single-mode emission
-
- H—ELECTRICITY
- H01—BASIC ELECTRIC ELEMENTS
- H01S—DEVICES USING STIMULATED EMISSION
- H01S3/00—Lasers, i.e. devices for generation, amplification, modulation, demodulation, or frequency-changing, using stimulated emission, of infra-red, visible, or ultra-violet waves
- H01S3/05—Construction or shape of optical resonators; Accomodation of active medium therein; Shape of active medium
- H01S3/06—Construction or shape of active medium
- H01S3/063—Waveguide lasers, i.e. whereby the dimensions of the waveguide are of the order of the light wavelength
- H01S3/067—Fibre lasers
- H01S3/0675—Resonators including a grating structure, e.g. distributed Bragg reflectors [DBR] or distributed feedback [DFB] fibre lasers
-
- H—ELECTRICITY
- H01—BASIC ELECTRIC ELEMENTS
- H01S—DEVICES USING STIMULATED EMISSION
- H01S3/00—Lasers, i.e. devices for generation, amplification, modulation, demodulation, or frequency-changing, using stimulated emission, of infra-red, visible, or ultra-violet waves
- H01S3/05—Construction or shape of optical resonators; Accomodation of active medium therein; Shape of active medium
- H01S3/06—Construction or shape of active medium
- H01S3/063—Waveguide lasers, i.e. whereby the dimensions of the waveguide are of the order of the light wavelength
- H01S3/067—Fibre lasers
- H01S3/06708—Constructional details of the fibre, e.g. compositions, cross-section, shape or tapering
- H01S3/06729—Peculiar transverse fibre profile
-
- H—ELECTRICITY
- H01—BASIC ELECTRIC ELEMENTS
- H01S—DEVICES USING STIMULATED EMISSION
- H01S3/00—Lasers, i.e. devices for generation, amplification, modulation, demodulation, or frequency-changing, using stimulated emission, of infra-red, visible, or ultra-violet waves
- H01S3/05—Construction or shape of optical resonators; Accomodation of active medium therein; Shape of active medium
- H01S3/06—Construction or shape of active medium
- H01S3/063—Waveguide lasers, i.e. whereby the dimensions of the waveguide are of the order of the light wavelength
- H01S3/067—Fibre lasers
- H01S3/06754—Fibre amplifiers
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US9083147B2 (en) | Distributed feedback (DFB) Brillouin fiber lasers | |
Zhang et al. | Six-wavelength-switchable narrow-linewidth thulium-doped fiber laser with polarization-maintaining sampled fiber Bragg grating | |
Wang et al. | Single-longitudinal-mode fiber laser with an ultra-narrow linewidth and extremely high stability obtained by utilizing a triple-ring passive subring resonator | |
Feng et al. | Photonic generation of microwave signal using a dual-wavelength erbium-doped fiber ring laser with CMFBG filter and saturable absorber | |
Shen et al. | Switchable narrow linewidth fiber laser with LP11 transverse mode output | |
Zhang et al. | A broad continuous temperature tunable DBR single-frequency fiber laser at 1064 nm | |
Wang et al. | Tunable single-longitudinal-mode fiber laser based on a chirped fiber Bragg grating | |
Tang et al. | Gourd-shaped subring resonator-based single longitudinal mode erbium-doped fiber laser | |
Feng et al. | Switchable single-longitudinal-mode dual-wavelength erbium-doped fiber ring laser based on one polarization-maintaining fiber Bragg grating incorporating saturable absorber and feedback fiber loop | |
Yeh et al. | Stable and selectable erbium multiple-ring laser with self-injection loop | |
Yang et al. | Tunable fiber laser using an Er/Yb codoped fiber based modal interferometer filter | |
Shi et al. | All-fiberized single-frequency silica fiber laser operating above 2 μm based on SMS fiber devices | |
Zhang et al. | A highly stable frequency single-mode optical fiber laser based on a Fabry-Perot etalon | |
Yeh et al. | Stabilized and tunable single-longitudinal-mode erbium fiber laser employing ytterbium-doped fiber based interference filter | |
Moore et al. | Tunable dual-wavelength fiber laser | |
Liu et al. | Research on stabilization of the frequency of a single longitude mode optical fiber laser | |
Lv et al. | Stable single frequency Er-doped all-fiber ring laser with fiber Bragg grating Fabry-Perot filter | |
Baby et al. | Continuous-wave operation of semiconductor optical amplifier-based multiwavelength tunable fiber lasers with 25-GHz spacing | |
Chen et al. | 2-μm Switchable dual-wavelength single-longitudinal-mode fiber laser based on a core-offset structure and carbon nanotube | |
Wan et al. | Single-longitudinal-mode, narrow bandwidth double-ring fiber laser stabilized by an efficiently taper-coupled high roundness microsphere resonator | |
Jin et al. | Ultrafine frequency linearly tunable single-frequency fiber laser based on intracavity active tuning | |
Halip et al. | A narrow linewidth tunable single longitudinal mode Ga-EDF fiber laser | |
Zhang et al. | Switchable and tunable dual-wavelength Er-doped fiber ring laser with single-frequency lasing wavelengths | |
Yang et al. | Fundamental principle and enabling technologies of single-frequency fiber lasers | |
Torres-Gonzalez et al. | An aluminum coated all-fiber mirror and a Mach–Zehnder interferometer for developing a switchable and tunable multi-wavelength laser |