NO920881L - Laser - Google Patents

Laser

Info

Publication number
NO920881L
NO920881L NO92920881A NO920881A NO920881L NO 920881 L NO920881 L NO 920881L NO 92920881 A NO92920881 A NO 92920881A NO 920881 A NO920881 A NO 920881A NO 920881 L NO920881 L NO 920881L
Authority
NO
Norway
Prior art keywords
noble gas
laser
dimerions
active medium
lived
Prior art date
Application number
NO92920881A
Other languages
English (en)
Other versions
NO920881D0 (no
Inventor
Peter Collin Hill
Original Assignee
Peter Collin Hill
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from PCT/AU1990/000403 external-priority patent/WO1991003850A1/en
Application filed by Peter Collin Hill filed Critical Peter Collin Hill
Publication of NO920881D0 publication Critical patent/NO920881D0/no
Publication of NO920881L publication Critical patent/NO920881L/no

Links

Landscapes

  • Lasers (AREA)

Abstract

Det er oppdaget at kortlivede dimerioner dannes i en edelgass under høyenergetiske betingelser, som under en elektrisk utladning. Disse edelgass dimer-ionene har eksiterte energitilstander som gjør dem passende til bruk som aktivt medium i en laser. En laser laget ved å bruke edelgass-dimerioner som aktivt medium oppviser høy virkningsgrad, kan avstemmes over et bredt spektrum av bølgelengder, og kan drives kontinuerlig.
NO92920881A 1989-09-06 1992-03-05 Laser NO920881L (no)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
AU622289 1989-09-06
PCT/AU1990/000403 WO1991003850A1 (en) 1989-09-06 1990-09-06 A laser

Publications (2)

Publication Number Publication Date
NO920881D0 NO920881D0 (no) 1992-03-05
NO920881L true NO920881L (no) 1992-05-05

Family

ID=25611674

Family Applications (1)

Application Number Title Priority Date Filing Date
NO92920881A NO920881L (no) 1989-09-06 1992-03-05 Laser

Country Status (1)

Country Link
NO (1) NO920881L (no)

Also Published As

Publication number Publication date
NO920881D0 (no) 1992-03-05

Similar Documents

Publication Publication Date Title
Chin et al. Multiphoton ionization of Xe and Kr with intense 0.62-μm femtosecond pulses
US8349226B2 (en) Method of increasing the laser damage threshold of diffraction gratings
Pogorelsky et al. Subnanosecond multi-gigawatt CO/sub 2/laser
WO2004109717A3 (en) High energy polyenergetic ion beam systems
Afzaal et al. Gas-phase photodissociation study of Ag (benzene)+ and Ag (toluene)+
WO2006026596A3 (en) Corona discharge lamps
Kosmidis et al. On the dissociation pathways of nitrobenzene
CN100504566C (zh) 一种啁啾脉冲压缩方法及装置
Smith et al. Ionization and dissociation of benzaldehyde using short intense laser pulses
NO920881L (no) Laser
Kuptsov et al. Simulation of picosecond pulse propagation in fibre-based radiation shaping units
Piltch Multi-line pulsed CO2 oscillator
AU7446594A (en) High power, single-frequency tunable laser
US3904982A (en) Broad band exciplex dye lasers
Kurnosov et al. Dynamics of frequency-selective operation of a CO laser tunable in a wide spectral range
Patel 30 Years of Gas Discharge Lasers
Gurskii et al. High-efficiency electron-beam-pumped semiconductor laser emitters
McDonald et al. Ultrabroad Bandwidth Multiline Stimulated Raman Scattering
Papalazarou et al. Spectral phase distribution retrieval through coherent control of harmonic generation
Anders et al. Evaluation of the action spectrum of yeast photoreactivation in vivo by means of pulsed dye lasers
Filiouguine et al. Powerful UV-radiation impulse source pumped by the sublight ionization waves for the bacteriological disinfection of water
Elsaesser et al. Time-resolved observation of geometrical reorientations of metal clusters
Gusev et al. Stimulated diffusion backscattering of nanosecond pulses under exposure accumulation conditions
Kopylova et al. High-power narrow-band dye laser pumped by a XeCl Joule exciplex laser
Antonetti et al. A laser system producing 5× 10 [sup 19] W/cm [sup 2] at 10 Hz.