Claims
- 1. A solid state laser system, comprising:
(a) a solid state oscillator, including:
an elongated housing having an elongated cavity defined therein, a solid state rod disposed within the cavity, a pumping source for exciting laser active species within the rod, and a resonator including the rod disposed therein for generating a laser beam; and (b) a multiple-stage amplifier for increasing and energy of the beam including an even number of stages, one or more pairs of compensating stages being mutually rotated about the beam axis by substantially 90°.
- 2. A solid state laser system, comprising:
(a) a solid state oscillator, including:
an elongated housing having an elongated cavity defined therein, a solid state rod disposed within the cavity, a pumping source for exciting laser active species within the rod, and a resonator including the rod disposed therein for generating a laser beam; and (b) a multiple stage amplifier for increasing an energy of the beam including at least a first stage side-pumped by a pumping radiation source in a direction substantially parallel to a polarization direction of the beam generated by the oscillator resonator.
- 3. The laser system of claim 2, a pair of compensating stages of said amplifier being mutually rotated about the beam axis by substantially 90°.
- 4. A solid state laser system, comprising:
(a) a solid state oscillator, including:
an elongated housing having an elongated cavity defined therein, a solid state rod disposed within the cavity, a pumping source for exciting laser active species within the rod, and a resonator including the rod disposed therein for generating a laser beam; (b) an multiple stage amplifier for increasing an energy of the beam; and (c) a divergence adjusting optic before at least one stage of the amplifier for adjusting a divergence of the beam prior to entering the amplifier stage.
- 5. The laser system of claim 4, further comprising a second divergence adjusting optic after said amplifier stage having said divergence adjusting optic before it, said second divergence adjusting optic being disposed before a second amplifier stage and being adjustable as to an amount of its divergence adjustment.
- 6. The laser system of claim 5, the second divergence adjusting optic comprising a pair of lenses with adjustable spacing.
- 7. The laser system of claim 5, the second divergence adjusting optic comprising a pair of negative lenses with adjustable spacing.
- 8. The laser system of claim 4, a pair of compensating amplifier stages being rotated about the beam axis by substantially 90°.
- 9. The laser system of claim 4, at least a first stage being side-pumped by a pumping radiation source in a direction substantially parallel to a polarization direction of the beam generated by the oscillator resonator.
- 10. A solid state laser system, comprising:
(a) a solid state-oscillator, including:
an elongated housing having an elongated cavity defined therein, a solid state rod disposed within the cavity, a pumping source for exciting laser active species within the rod, and a resonator including the rod disposed therein for generating a laser beam; (b) an multiple stage amplifier for increasing an energy of the beam; and (c) a divergence adjusting optic after a first amplifier stage and before a second amplifier stage, the divergence adjusting optic being adjustable as to an amount of its divergence adjustment.
- 11. The laser system of claim 10, the divergence adjusting optic comprising a pair of lenses with adjustable spacing.
- 12. The laser system of claim 10, the divergence adjusting optic comprising a pair of negative lenses with adjustable spacing
- 13. The laser system of claim 10, a pair of compensating amplifier stages being rotated about the beam axis by substantially 90°.
- 14. The laser system of claim 10, at least a first amplifier stage being side-pumped by a pumping radiation source in a direction substantially parallel to a polarization direction of the beam generated by the oscillator resonator.
- 15. The laser system of any of claims 1, 2, 4 or 10, further comprising a half-wave plate between at least one compensating pair of stages of the amplifier.
- 16. The laser system of claim 15, further comprising a quarter-wave plate between said at least one compensating pair of stages of the amplifier.
- 17. The laser system of any of claims 1, 2, 4 or 10, further comprising a quartz rotator between at least one compensating pair of stages of the amplifier.
- 18. The laser system of any of claims 1, 2, 4 or 10, the oscillator including a side-pumped diode-pumped solid state laser device, said elongated housing further having an elongated opening defined between the cavity and the exterior of the housing, said solid state rod being surrounded by a cooling fluid, the device further comprising a cover seal outside the housing and sealably covering the opening and thereby enclosing the cavity of the housing, the cover seal being formed of a material that is at least substantially transparent to pumping radiation at a predetermined pumping wavelength, said pumping source comprising a diode array proximate to the cover seal for emitting pumping radiation that traverses the cover seal and the opening to be absorbed by the rod to excite laser active species within the rod.
- 19. The laser system of any of claims 1, 2, 4 or 10, the oscillator including a side-pumped diode-pumped solid state laser-device, said elongated housing further having an elongated opening defined between the cavity and the exterior of the housing, the elongated opening having a radial extent defined from a center of the cavity of at least 30°, said solid state rod being surrounded by a cooling fluid, the device further comprising a cover seal sealably covering the opening and thereby enclosing the cavity, the cover seal being formed of a material that is at least substantially transparent to pumping radiation at a predetermined pumping wavelength, the pumping source comprising a diode array proximate to the cover seal for emitting pumping radiation that traverses the cover seal and the opening to be absorbed by the rod to excite laser active species within the rod.
- 20. The laser system of any of claims 1, 2, 4 or 10, the oscillator including a side-pumped diode-pumped solid state laser device, said elongated housing comprising a diffuse reflector housing having an elongated cavity defined therein by a diffusely reflective cavity wall, said housing further having an elongated opening defined between the cavity and the exterior of the housing, said solid state rod being surrounded by a cooling fluid, the device further comprising a cover seal sealably covering the opening and thereby enclosing the cavity, the cover seal being formed of a material that is at least substantially transparent to pumping radiation at a predetermined pumping wavelength, the pumping source comprising a diode array proximate to the cover seal for emitting the pumping radiation that traverses the cover seal and the opening to be absorbed by the rod to excite laser active species within the rod, wherein a substantial portion of the pumping radiation absorbed by the rod is first reflected from the diffuse reflector housing.
- 21. The laser system of any of claims 1, 2, 4 or 10, each stage of the multiple stage amplifier including a side-pumped diode-pumped solid state laser device, wherein each side-pumped solid state laser device includes:
an elongated housing having an elongated cavity defined therein, said elongated housing further having an elongated opening defined between the cavity and the exterior of the housing; a solid state rod disposed within the cavity, said solid state rod being surrounded by a cooling fluid; and the device further comprising a cover seal outside the housing and sealably covering the opening and thereby enclosing the cavity of the housing, the cover seal being formed of a material that is at least substantially transparent to pumping radiation at a predetermined pumping wavelength, said pumping source comprising a diode array proximate to the cover seal for emitting pumping radiation that traverses the cover seal and the opening to be absorbed by the rod to excite laser active species within the rod.
- 22. The laser system of any of claims 1, 2, 4 or 10, each stage of the multiple stage amplifier including a side-pumped diode-pumped solid state laser device, wherein each side-pumped solid state laser device includes:
an elongated housing having an elongated cavity defined therein, said elongated housing further having an elongated opening defined between the cavity and the exterior of the housing, the elongated opening having a radial extent defined from a center of the cavity of at least 30°; a solid state rod disposed within the cavity, said solid state rod being surrounded by a cooling fluid; and the device further comprising a cover seal sealably covering the opening and thereby enclosing the cavity, the cover seal being formed of a material that is at least substantially transparent to pumping radiation at a predetermined pumping wavelength, the pumping source comprising a diode array proximate to the cover seal for emitting pumping radiation that traverses the cover seal and the opening to be absorbed by the rod to excite laser active species within the rod.
- 23. The laser system of any of claims 1, 2, 4 or 10, each stage of the multiple stage amplifier including a side-pumped diode-pumped solid state laser device, wherein each side-pumped solid state laser device includes:
an elongated housing having an elongated cavity defined therein, said elongated housing comprising a diffuse reflector housing having an elongated cavity defined therein by a diffusely reflective cavity wall, said housing further having an elongated opening defined between the cavity and the exterior of the housing; a solid state rod disposed within the cavity, said solid state rod being surrounded by a cooling fluid; the device further comprising a cover seal sealably covering the opening and thereby enclosing the cavity, the cover seal being formed of a material that is at least substantially transparent to pumping radiation at a predetermined pumping wavelength; and a pumping source for exciting laser active species within the rod, the pumping source comprising a diode array proximate to the cover seal for emitting the pumping radiation that traverses the cover seal and the opening to be absorbed by the rod to excite laser active species within the rod, wherein a substantial portion of the pumping radiation absorbed by the rod is first reflected from the diffuse reflector housing.
- 24. The laser system of any of claims 1, 2, 4 or 10, each stage of the multiple stage amplifier including a side-pumped diode-pumped solid state laser device, wherein each side-pumped solid state laser device includes:
an elongated housing having an elongated cavity defined therein; a solid state rod disposed within the cavity; and a pumping source for exciting laser active species within the rod.
PRIORITY
[0001] This application claims the benefit of priority to U.S. provisional patent application serial number No. 60/355,078, filed Feb. 7, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60355078 |
Feb 2002 |
US |