FI (list display)

  • H01S3/00
  • Lasers, i.e. devices using stimulated emission of electromagnetic radiation in the infrared, visible or ultraviolet wave range (semiconductors lasers H01S?5/00) HB CC 5F172
  • H01S3/00@A
  • characterised by applications HB CC 5F172
  • H01S3/00@B
  • .Processing by lasers HB CC 5F172
  • H01S3/00@F
  • .Measurements or monitoring by lasers HB CC 5F172
  • H01S3/00@G
  • Measuring or monitoring of lasers HB CC 5F172
  • H01S3/00@Z
  • Others HB CC 5F172
  • H01S3/02
  • .Constructional details HB CC 5F172
  • H01S3/03
  • ..of gas laser discharge tubes [2] HB CC 5F071
  • H01S3/03@L
  • Supporting, mounting or adjusting positions of tubes per se HB CC 5F071
  • H01S3/03@Z
  • Others HB CC 5F071
  • H01S3/032
  • ...for confinement of the discharge, e.g. by special features of the discharge constricting tube HB CC 5F071
  • H01S3/034
  • ...Optical devices within, or forming part of, the tube, e.g. windows, mirrors (reflectors having variable properties or positions for initial adjustment of the resonator H01S 3/086) HB CC 5F071
  • H01S3/036
  • ...Means for obtaining or maintaining the desired gas pressure within the tube, e.g. by getteringor replenishing; Means for circulating the gas, e.g. for equalising the pressure within the tube HB CC 5F071
  • H01S3/038
  • ...Electrodes, e.g. special shape, configuration or composition HB CC 5F071
  • H01S3/038@A
  • materials of electrode HB CC 5F071
  • H01S3/038@B
  • using dielectric action HB CC 5F071
  • H01S3/038@Z
  • Others HB CC 5F071
  • H01S3/04
  • ..Arrangements for thermal management [2006.01] HB CC 5F172
  • H01S3/041
  • ...for gas lasers HB CC 5F172
  • H01S3/042
  • ...for solid state lasers HB CC 5F172
  • H01S3/05
  • .Construction or shape of optical resonators; Accommodation of active medium therein; Shape of active medium HB CC 5F172
  • H01S3/06
  • ..Construction or shape of active medium HB CC 5F172
  • H01S3/063
  • ...Waveguide lasers, e.g. laser amplifiers HB CC 5F172
  • H01S3/067
  • ....Fibre lasers HB CC 5F172
  • H01S3/07
  • ...consisting of a plurality of parts, e.g. segments, optical fibres [2] HB CC 5F172
  • H01S3/08
  • ..Construction or shape of optical resonators or components thereof [1, 2, 2006.01, 2023.01] HB CC 5F172
  • H01S3/08018
  • ...Mode suppression [2023.01] HB CC 5F172
  • H01S3/08022
  • .... Longitudinal modes (mode suppression using a plurality of resonators H01S 3/082) [2023.01] HB CC 5F172
  • H01S3/08031
  • ..... Single-mode emission [2023.01] HB CC 5F172
  • H01S3/08036
  • ...... using intracavity dispersive, polarising or birefringent elements [2023.01] HB CC 5F172
  • H01S3/0804
  • .... Transverse or lateral modes [2023.01] HB CC 5F172
  • H01S3/08045
  • ..... Single-mode emission [2023.01] HB CC 5F172
  • H01S3/0805
  • ..... by apertures, e.g. pin-holes or knifeedges [2023.01] HB CC 5F172
  • H01S3/081
  • ...comprising more than two reflectors [2] HB CC 5F172
  • H01S3/082
  • .... defining a plurality of resonators, e.g. for mode selection or suppression [2, 2006.01] HB CC 5F172
  • H01S3/083
  • ....Ring lasers [2] HB CC 5F172
  • H01S3/086
  • ...One or more reflectors having variable properties or positions for initial adjustment of the resonator (varying a parameter of the laser output during operation H01S 3/10; stabilisation of the laser output H01S 3/13) [2] HB CC 5F172
  • H01S3/09
  • .Processes or apparatus for excitation, e.g. pumping HB CC 5F172
  • H01S3/091
  • ..using optical pumping [2] HB CC 5F172
  • H01S3/0915
  • ...by incoherent light HB CC 5F172
  • H01S3/092
  • ....by flash lamp [2] HB CC 5F172
  • H01S3/093
  • .....focusing or directing the excitation energy into the active medium [2] HB CC 5F172
  • H01S3/0933
  • ....of a semiconductor, e.g. light emitting diode HB CC 5F172
  • H01S3/0937
  • ....produced by exploding or combustible material HB CC 5F172
  • H01S3/094
  • ...by coherent light [2] HB CC 5F172
  • H01S3/0941
  • ....of a semiconductor laser, e.g. of a laser diode HB CC 5F172
  • H01S3/0943
  • ....of a gas laser HB CC 5F172
  • H01S3/0947
  • ....of an organic dye laser HB CC 5F172
  • H01S3/095
  • ..using chemical or thermal pumping [2] HB CC 5F172
  • H01S3/0951
  • ...by increasing the pressure in the laser gas medium HB CC 5F172
  • H01S3/0953
  • ....Gas dynamic lasers, i.e. with expansion of the laser gas medium to supersonic flow speeds HB CC 5F172
  • H01S3/0955
  • ..using pumping by high energy particles HB CC 5F172
  • H01S3/0957
  • ...by high energy nuclear particles HB CC 5F172
  • H01S3/0959
  • ...by an electron beam HB CC 5F172
  • H01S3/097
  • ..by gas discharge of a gas laser [2] HB CC 5F071
  • H01S3/097@A
  • Discharge circuits HB CC 5F071
  • H01S3/097@Z
  • Others HB CC 5F071
  • H01S3/0971
  • ...transversely excited (H01S 3/0975 takes precedence);; HB CC 5F071
  • H01S3/0973
  • ....having a travelling wave passing through the active medium HB CC 5F071
  • H01S3/0975
  • ...using inductive or capacitive excitation HB CC 5F071
  • H01S3/0977
  • ...having auxiliary ionisation means HB CC 5F071
  • H01S3/0979
  • ...Gas dynamic lasers, i.e. with expansion of the laser gas medium to supersonic flow speeds HB CC 5F071
  • H01S3/10
  • .Controlling the intensity, frequency, phase, polarisation or direction of the emitted radiation, e.g. switching, gating, modulating or demodulating [1, 2, 2006.01] HB CC 5F172
  • H01S3/10@D
  • light amplifier HB CC 5F172
  • H01S3/10@Z
  • Others HB CC 5F172
  • H01S3/101
  • ..Lasers provided with means to change the location from which, or the direction in which, laser radiation is emitted [2] HB CC 5F172
  • H01S3/102
  • ..by controlling the active medium, e.g. by controlling the processes or apparatus for excitation (H01S 3/13 takes precedence) [4] HB CC 5F172
  • H01S3/104
  • ...in gas lasers [4] HB CC 5F071
  • H01S3/105
  • ..by controlling the mutual position or the reflecting properties of the reflectors of the cavity (H01S 3/13 takes precedence) [4] HB CC 5F172
  • H01S3/1055
  • ...one of the reflectors being constituted by a diffraction grating [4] HB CC 5F172
  • H01S3/106
  • ..by controlling a device placed within the cavity (H01S 3/13 takes precedence) [4] HB CC 5F172
  • H01S3/107
  • ... using electro-optic devices, e.g. exhibiting Pockels or Kerr effect [4, 2006.01] HB CC 5F172
  • H01S3/108
  • ...using a non-linear optical device, e.g. exhibiting Brillouin- or Raman-scattering [4] HB CC 5F172
  • H01S3/109
  • ....Frequency multiplying, e.g. harmonic generation [4] HB CC 5F172
  • H01S3/11
  • .. Mode locking; Q-switching; Other giant-pulse techniques, e.g. cavity dumping [1, 2006.01, 2023.01] HB CC 5F172
  • H01S3/1106
  • ... Mode locking [2023.01] HB CC 5F172
  • H01S3/1109
  • .... Active mode locking [2023.01] HB CC 5F172
  • H01S3/1112
  • .... Passive mode locking [2023.01] HB CC 5F172
  • H01S3/1115
  • ..... using intracavity saturable absorbers [2023.01] HB CC 5F172
  • H01S3/1118
  • ...... Semiconductor saturable absorbers, e.g. semiconductor saturable absorber mirrors [SESAMs]; Solid-state saturable absorbers, e.g. carbon nanotube [CNT] based [2023.01] HB CC 5F172
  • H01S3/1123
  • ... Q-switching [2023.01] HB CC 5F172
  • H01S3/113
  • .... using intracavity saturable absorbers [2, 2006.01] HB CC 5F172
  • H01S3/115
  • .... using intracavity electro-optic devices [4, 2006.01] HB CC 5F172
  • H01S3/117
  • .... using intracavity acousto-optic devices [4, 2006.01] HB CC 5F172
  • H01S3/121
  • .... using intracavity mechanical devices [4, 2006.01] HB CC 5F172
  • H01S3/123
  • ..... using rotating mirrors [4, 2006.01] HB CC 5F172
  • H01S3/125
  • ..... using rotating prisms [4, 2006.01] HB CC 5F172
  • H01S3/127
  • .... Plural Q-switches [4, 2006.01] HB CC 5F172
  • H01S3/13
  • ..Stabilisation of laser output parameters, e.g. HB CC 5F172
  • H01S3/131
  • ...by controlling the active medium, e.g. by controlling the processes or apparatus for excitation [4] HB CC 5F172
  • H01S3/134
  • ....in gas lasers [4] HB CC 5F071
  • H01S3/136
  • ...by controlling a device placed within the cavity [4] HB CC 5F172
  • H01S3/137
  • ....for stabilising of frequency [4] HB CC 5F172
  • H01S3/139
  • ...by controlling the mutual position or the reflecting properties of the reflectors of the cavity [4] HB CC 5F172
  • H01S3/14
  • .characterised by the material used as the active medium HB CC 5F172
  • H01S3/16
  • ..Solid materials HB CC 5F172
  • H01S3/17
  • ...amorphous, e.g. glass [2] HB CC 5F172
  • H01S3/20
  • ..Liquids HB CC 5F172
  • H01S3/207
  • ...including a chelate HB CC 5F172
  • H01S3/213
  • ...including an organic dye HB CC 5F172
  • H01S3/22
  • ..Gases HB CC 5F071
  • H01S3/223
  • ...polyatomic [2] HB CC 5F071
  • H01S3/225
  • ....comprising an excimer or exciplex HB CC 5F071
  • H01S3/227
  • ...Metal vapour HB CC 5F071
  • H01S3/23
  • .Arrangement of two or more lasers not provided for in groups H01S 3/02-H01S 3/22, e.g. tandem arrangements of separate active media [2] HB CC 5F172
  • H01S3/30
  • .using scattering effects, e.g. stimulated Brillouin or Raman effects [2] HB CC 5F172
  • H01S3/30@A
  • free-electron lasers HB CC 5F172
  • H01S3/30@Z
  • Others HB CC 5F172
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