Claims
- 1. An integrated laser oscillator-amplifier system comprising:
a laser oscillator having a gain medium and a long resonant cavity, said laser oscillator pre-lases to produce a seed pulse when said gain medium is excited with a pump pulse; and a laser amplifier having said gain medium and a short resonant cavity, said laser amplifier is integrated into said laser oscillator via a mirror with low reflectivity and amplifies said seed pulse to generate a short amplified pulse; wherein said laser oscillator-amplifier system produces a single amplified laser pulse.
- 2. An integrated laser oscillator-amplifier system as in claim 1 wherein said laser oscillator has a first and a second mirror.
- 3. An integrated laser oscillator-amplifier system as in claim 1 wherein gain medium is selected from Ti:Sapphire Cr:LiSAlF, or Nd-doped laser rods.
- 4. An integrated laser oscillator-amplifier system as in claim 1 wherein said laser oscillator has further a wavelength selection element to control the wavelength and bandwidth of said seed pulse.
- 5. An integrated laser oscillator-amplifier system as in claim 4 wherein said wavelength selection element is made of one or more quartz plates.
- 6. An integrated laser oscillator-amplifier system as in claim 1 wherein said laser oscillator has a cavity length of about 20 to 50 cm.
- 7. An integrated laser oscillator-amplifier system as in claim 1 wherein pump pulse is a laser pulse.
- 8. An integrated laser oscillator-amplifier system as in claim 1 wherein pump pulse has a pulse length of about 50 to 200 ns.
- 9. An integrated laser oscillator-amplifier system as in claim 1 wherein pump pulse has a pulse energy of about 3 to 10 mJ.
- 10. An integrated laser oscillator-amplifier system as in claim 1 wherein pump pulse is delivered from a Q-switched frequency doubled Nd:YLF laser.
- 11. An integrated laser oscillator-amplifier system as in claim 1 wherein said mirror with low reflectivity has a reflectivity of about 20 to 70%.
- 12. An integrated laser oscillator-amplifier system as in claim 1 wherein said gain medium is cut for Brewster angle of incidence to control the polarization of said seed pulse.
- 13. A method for producing an integrated laser oscillator-amplifier system, comprising the steps of:
providing a laser oscillator having a long cavity length to produce a seed pulse, said laser oscillator includes a gain medium; constructing a laser amplifier inside said laser oscillator by inserting into said oscillator cavity a mirror with low reflectivity, said laser amplifier has a short cavity around said gain medium; and providing a pulsed pump laser beam to excite said gain medium to produce energy for both said laser oscillator and said laser amplifier; wherein said integrated laser oscillator-amplifier system produces an amplified pulse carrying substantially the wavelength, beam quality, and spectral bandwidth defined by said laser oscillator.
- 14. A method as in claim 13, further comprising the steps of:
providing a wavelength selection element inside said oscillator cavity; wherein said seed pulse has a predetermined wavelength and spectrum bandwidth.
- 15. An integrated laser oscillator-amplifier system comprising:
a gain medium of solid state crystal, wherein said gain medium provides optical gain when said gain medium is excited with a pump laser pulse; a wavelength selection element aligned optically with said gain medium; a first resonant cavity enclosing said gain medium and said wavelength selection element and having a long cavity length to produce a seed pulse with predetermined wavelength, beam profile, and spectrum bandwidth; and a second resonant cavity enclosing at least said gain medium and having a shorter cavity length and a higher laser threshold than said first resonant cavity, wherein said second resonant cavity is aligned optically with said first resonant cavity to amplify and shorten said seed pulse into an amplified pulse; wherein said laser oscillator-amplifier system produces a single amplified laser pulse of nanosecond duration.
- 16. An integrated laser oscillator-amplifier system as in claim 15 wherein said gain medium is selected from Ti:Sapphire Cr:LiSAlF, or Nd-doped laser rods.
- 17. An integrated laser oscillator-amplifier system as in claim 15 wherein said wavelength selection element is made of one or more (quartz plates.
- 18. An integrated laser oscillator-amplifier system as in claim 15 wherein said first resonant cavity has a cavity length of about 20 to 50 cm.
- 19. An integrated laser oscillator-amplifier system as in claim 15 wherein pump pulse has a pulse length of about 50 to 200 ns.
- 20. An integrated laser oscillator-amplifier system as in claim 15 wherein pump pulse has a pulse energy of about 3 to 10 mJ.
Parent Case Info
[0001] This application claims the benefit of U.S. provisional application No. 60/363,945, filed on Mar. 11, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
|
60363945 |
Mar 2002 |
US |