[go: up one dir, main page]

Weber, 1975 - Google Patents

Nd pentaphosphate lasers

Weber, 1975

Document ID
1374219881720880752
Author
Weber H
Publication year
Publication venue
Optical and Quantum Electronics

External Links

Snippet

Nd pentaphosphate is a crystalline material with very high Nd concentration (30 times higher than 1% Nd doped YAG) and yet low concentration quenching. It is an excellent material to construct optically pumped, miniaturized, low threshold lasers, oscillating at 1.05 μ sm …
Continue reading at link.springer.com (other versions)

Classifications

    • HELECTRICITY
    • H01BASIC ELECTRIC ELEMENTS
    • H01SDEVICES USING STIMULATED EMISSION
    • H01S3/00Lasers, i.e. devices for generation, amplification, modulation, demodulation, or frequency-changing, using stimulated emission, of infra-red, visible, or ultra-violet waves
    • H01S3/05Construction or shape of optical resonators; Accomodation of active medium therein; Shape of active medium
    • H01S3/06Construction or shape of active medium
    • H01S3/063Waveguide lasers, i.e. whereby the dimensions of the waveguide are of the order of the light wavelength
    • H01S3/067Fibre lasers
    • H01S3/06708Constructional details of the fibre, e.g. compositions, cross-section, shape or tapering
    • HELECTRICITY
    • H01BASIC ELECTRIC ELEMENTS
    • H01SDEVICES USING STIMULATED EMISSION
    • H01S3/00Lasers, i.e. devices for generation, amplification, modulation, demodulation, or frequency-changing, using stimulated emission, of infra-red, visible, or ultra-violet waves
    • H01S3/14Lasers, i.e. devices for generation, amplification, modulation, demodulation, or frequency-changing, using stimulated emission, of infra-red, visible, or ultra-violet waves characterised by the material used as the active medium
    • H01S3/16Solid materials
    • H01S3/1601Solid materials characterised by an active (lasing) ion
    • H01S3/1603Solid materials characterised by an active (lasing) ion rare earth
    • H01S3/1608Solid materials characterised by an active (lasing) ion rare earth erbium
    • HELECTRICITY
    • H01BASIC ELECTRIC ELEMENTS
    • H01SDEVICES USING STIMULATED EMISSION
    • H01S3/00Lasers, i.e. devices for generation, amplification, modulation, demodulation, or frequency-changing, using stimulated emission, of infra-red, visible, or ultra-violet waves
    • H01S3/09Processes or apparatus for excitation, e.g. pumping
    • H01S3/091Processes or apparatus for excitation, e.g. pumping using optical pumping
    • H01S3/094Processes or apparatus for excitation, e.g. pumping using optical pumping by coherent light
    • H01S3/0941Processes or apparatus for excitation, e.g. pumping using optical pumping by coherent light of a laser diode
    • HELECTRICITY
    • H01BASIC ELECTRIC ELEMENTS
    • H01SDEVICES USING STIMULATED EMISSION
    • H01S3/00Lasers, i.e. devices for generation, amplification, modulation, demodulation, or frequency-changing, using stimulated emission, of infra-red, visible, or ultra-violet waves
    • H01S3/10Controlling the intensity, frequency, phase, polarisation or direction of the emitted radiation, e.g. switching, gating, modulating or demodulating
    • H01S3/106Controlling the intensity, frequency, phase, polarisation or direction of the emitted radiation, e.g. switching, gating, modulating or demodulating by controlling a device placed within the cavity
    • H01S3/1063Controlling the intensity, frequency, phase, polarisation or direction of the emitted radiation, e.g. switching, gating, modulating or demodulating by controlling a device placed within the cavity using a solid state device provided with at least one potential jump barrier
    • HELECTRICITY
    • H01BASIC ELECTRIC ELEMENTS
    • H01SDEVICES USING STIMULATED EMISSION
    • H01S3/00Lasers, i.e. devices for generation, amplification, modulation, demodulation, or frequency-changing, using stimulated emission, of infra-red, visible, or ultra-violet waves
    • H01S3/02Constructional details

Similar Documents

Publication Publication Date Title
Weber Nd pentaphosphate lasers
Slooff et al. Optical properties of erbium-doped organic polydentate cage complexes
Kaminskii et al. High efficiency nanosecond Raman lasers based on tetragonal PbWO4 crystals
Meyn et al. Spectroscopic properties and efficient diode-pumped laser operation of neodymium-doped lanthanum scandium borate
Barnes et al. Room temperature Dy: YLF laser operation at 4.34 mu m
Morkel et al. Travelling-wave erbium fibre ring laser with 60 kHz linewidth
Rameix et al. An efficient, diode-pumped, 2 μm Tm: YAG waveguide laser
Cornacchia et al. Efficient, diode-pumped Tm3+: BaY2F8 vibronic laser
Hammons et al. Scaling of longitudinally diode-pumped self-frequency-doubling Nd: YCOB lasers
Ainslie et al. Erbium doped fibres for efficient optical amplifiers
De Sandro et al. Non-photorefractive CW Tm-indiffused Ti: LiNbO 3 waveguide laser operating at room temperature
Dutta Fiber amplifiers and fiber lasers
Li et al. Blue-pumped single-longitudinal-mode deep red band Pr: YLF Laser
Florea et al. Ytterbium-doped glass waveguide laser fabricated by ion exchange
Beghi et al. Debye temperature of erbium-doped yttrium aluminum garnet from luminescence and Brillouin scattering data
Merkle et al. Temperature-dependent lasing and spectroscopy of Yb: Y2O3 and Yb: Sc2O3
Liu et al. Spectroscopic and lasing properties of a mixed (Yb, Y, Lu, Gd) calcium oxyborate crystal: Yb0. 19Y0. 34Lu0. 12Gd0. 35Ca4O (BO3) 3
Gavrilovic et al. High‐power, single‐frequency diode‐pumped Nd: YAG microcavity lasers at 1.3 μm
US5796762A (en) Room temperature stable color center laserLiF:F2 +** material and method of lasing
Baiocco et al. Near infrared diode-pumped lasing of femtosecond-laser-written Pr: LiLuF4 waveguide
McKinnie et al. Ti/sup 3+/ion concentration and Ti: sapphire laser performance
Zuegel et al. Direct measurements of/sup 4/I/sub 11/2/terminal-level lifetime in Nd: YLF
Xing et al. Thermal shifts of the spectral lines in the/sup 4/F/sub 3/2/to/sup 4/I/sub 11/2/manifold of an Nd: YAG Laser
Malinowski et al. Infrared-to-blue-wavelength upconversion in thin film grown by liquid phase epitaxy
Hobrock et al. Four-level operation of Tm: Cr: YAlO 3 laser at 2.35 µ