Claims
- 1. An eyesafe, Q-switched, laser system for target identification, ranging, and gated viewing, said laser system having a number of diodes for optical pumping, comprising: a resonant pumped erbium (RPE) laser having a storage lifetime that minimizes said number of diodes needed to pump said Er laser, said RPE laser being in band to I2 devices.
- 2. The eyesafe, Q-switched laser system in accordance with claim 1, further comprising dilute concentrations of unsensitized Erbium in an approximate range between 0.1 and 2% of active ion, and having a lifetime of ˜10 msec for a 1.5 micron transition.
- 3. The eyesafe, Q-switched laser in accordance with claim 2, further comprising an Erbium crystalline or glass host pumped by 1.5 micron diodes or diode pumped Yb-Er glass lasers.
- 4. The eyesafe, Q-switched laser system in accordance with claim 1, further comprising an energy/pulse between ˜250 and 300 mJ.
- 5. The eyesafe, Q-switched laser system in accordance with claim 1, wherein said Erbium laser further comprises a wavelength of ˜1.5 microns.
- 6. The eyesafe, Q-switched laser system in accordance with claim 2, wherein said number of diodes pump ˜30 to 60 W at 1.5 microns wavelength for ˜10 ms.
- 7. An eyesafe, Q-switched, laser system or gain medium for target identification, ranging, gated viewing, and for amplifying fiber communications links, said laser comprising: a resonant pumped erbium (RPE) laser having a storage lifetime that minimizes said number of diodes needed to pump said optical parametric oscillators, said RPE laser being in band I2 devices, and that permits the attainment of gain coefficients of 0.5-1 cm1.
- 8. The eyesafe, Q-switched laser system or gain medium in accordance with claim 7, further comprising dilute concentrations of unsensitized erbium in a range of ˜0.1 and 2% of active ion, and having a lifetime of ˜10 msec for a 1.5 micron transition.
- 9. The eyesafe, Q-switched laser system or gain medium in accordance with claim 8, further comprising an erbium crystalline or glass host material pumped by 1.5 micron diodes or Yb-Er glass laser.
- 10. The eyesafe, Q-switched laser system or gain medium in accordance with claim 7, further comprising an energy/pulse between ˜250 and 300 mJ and a gain coefficient from 0.51 cm-1 cm−1.
- 11. The eyesafe, Q-switched laser system or gain medium in accordance with claim 8, wherein said erbium lasers further comprise a wavelength of ˜1.5 microns.
- 12. The eyesafe, Q-switched laser system or gain medium in accordance with claim 8, wherein said diodes pump ˜30 to 60 W at 1.5 micron wavelength for ˜10 ms.
- 13. An eyesafe, Q-switched, laser system or gain medium for target identification, ranging, and gated viewing, said laser system having a diode array pump source, comprising: a plurality of diodes needed to achieve high energy storage and high gain.
- 14. A gain medium suitable for amplifying the output of Er fiber lasers to achieve sufficient power for reliable free space communications links, comprising: a resonant.pumped erbium laser having a storage lifetime sufficient to achieve high gain.
- 15. The gain medium in accordance with claim 14, further comprising dilute concentrations of unsensitized Erbium in an approximate range between 0.1 and 2% of active ion, and having a lifetime of ˜10 msec for a 1.5 micron transition.
- 16. The gain medium in accordance with claim 14, further comprising an Erbium crystalline or glass host pumped by 1.5 micron diodes or diode pumped Yb-Er glass lasers.
- 17. The gain medium in accordance with claim 14, wherein said Erbium laser further comprises a wavelength of ˜1.5 microns.
RELATED APPLICATION
[0001] Applicants hereby claim benefit of the priority date for U.S. Provisional patent application Serial No. 60/201,645, filed May 2, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60201645 |
May 2000 |
US |