IP Library Granted Patent US 10,687,412
Granted Patent B1
US 10,687,412 · App. 16/564,685 · Granted Jun 16, 2020

Photonic-crystal-fiber-delivered laser-triggered high-voltage gas switch

Inventors: Sean Simpson (Rio Rancho, NM); Owen Johns (Albuquerque, NM); Charles E. Rose (Severance, CO); Azer Yalin (Fort Collins, CO); Ciprian Dumitrache (Paris, FR)
Assignees: National Technology & Engineering Solutions of Sandia, LLC; Colorado State University Research Foundation
H05H1/52G02B6/02328
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Quick Facts
Patent No.
US 10,687,412
App. No.
16/564,685
Granted
Jun 16, 2020
Kind
B1
Abstract

A photonic-crystal-fiber-delivered laser-triggered high-voltage gas switch can deliver a peak irradiance of greater than 5.1×10 11 W/cm 2 to the AK gap for a laser having a wavelength of 1064 nm. The switch is capable of operating at pressures up to 2200 psi; voltages across the gap of greater than 200 kV; operation at less than 70% self-break voltage; shot-to-shot jitter of less than 3 ns; AK gap distances of 3 mm or smaller; and triggering via a fiber-delivered laser pulse energy of as low as 500 μJ.

Claims (23)

1. A laser-triggered high-voltage gas switch, comprising:

a pressurized high-voltage gas switch having two opposing electrodes forming an AK gap therebetween, and

a fiber-delivery system for delivering a laser trigger to the AK gap, wherein the fiber-delivery system comprises a hollow-core photonic-crystal fiber and wherein a peak irradiance of the laser trigger is sufficient to form a plasma in the AK gap and wherein a laser energy of the laser trigger is less than 14 mJ.

2. The laser-triggered high-voltage gas switch of claim 1 , wherein the peak irradiance of the laser trigger is greater than 5.1×10 11 W/cm 2 for a laser having a wavelength of 1064 nm.

3. The laser-triggered high-voltage gas switch of claim 1 , wherein a voltage of the pressurized high-voltage gas switch is greater than 200 kV.

4. The laser-triggered high-voltage gas switch of claim 1 , wherein a gas pressure of the pressurized high-voltage gas switch is greater than 100 psi.

5. The laser-triggered high-voltage gas switch of claim 1 , wherein the AK gap of the pressurized high-voltage gas switch is less than 3 mm.

6. The laser-triggered high-voltage gas switch of claim 1 , wherein the laser energy of the laser trigger is less than 3 mJ.

7. The laser-triggered high-voltage gas switch of claim 1 , wherein the laser energy of the laser trigger is less than 1 mJ.

8. A laser-triggered high-voltage gas switch, comprising:

a pressurized high-voltage gas switch having two opposing electrodes forming an AK gap therebetween, wherein a voltage of the pressurized high-voltage gas switch is greater than 200 kV, and

a fiber-delivery system for delivering a laser trigger to the AK gap, wherein the fiber-delivery system comprises a hollow-core photonic-crystal fiber and wherein a peak irradiance of the laser trigger is sufficient to form a plasma in the AK gap.

9. The laser-triggered high-voltage gas switch of claim 8 , wherein the peak irradiance of the laser trigger is greater than 5.1×10 11 W/cm 2 for a laser having a wavelength of 1064 nm.

10. The laser-triggered high-voltage gas switch of claim 8 , wherein a gas pressure of the pressurized high-voltage gas switch is greater than 100 psi.

11. The laser-triggered high-voltage gas switch of claim 8 , wherein the AK gap of the pressurized high-voltage gas switch is less than 3 mm.

12. The laser-triggered high-voltage gas switch of claim 8 , wherein a laser energy of the laser trigger is less than 14 mJ.

13. A laser-triggered high-voltage gas switch, comprising:

a pressurized high-voltage gas switch having two opposing electrodes forming an AK gap therebetween, wherein a gas pressure of the pressurized high-voltage gas switch is greater than 100 psi, and

a fiber-delivery system for delivering a laser trigger to the AK gap, wherein the fiber-delivery system comprises a hollow-core photonic-crystal fiber and wherein a peak irradiance of the laser trigger is sufficient to form a plasma in the AK gap.

14. The laser-triggered high-voltage gas switch of claim 13 , wherein the peak irradiance of the laser trigger is greater than 5.1×10 11 W/cm 2 for a laser having a wavelength of 1064 nm.

15. The laser-triggered high-voltage gas switch of claim 13 , wherein a voltage of the pressurized high-voltage gas switch is greater than 200 kV.

16. The laser-triggered high-voltage gas switch of claim 13 , wherein the AK gap of the pressurized high-voltage gas switch is less than 3 mm.

17. The laser-triggered high-voltage gas switch of claim 13 , wherein a laser energy of the laser trigger is less than 14 mJ.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 7, 2020
From: YALIN, AZER; ROSE, CHARLES E.; DUMITRACHE, CIPRIAN
To: COLORADO STATE UNIVERSITY RESEARCH FOUNDATION
Reel/Frame 052602/0105 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 10, 2019
From: SIMPSON, SEAN; JOHNS, OWEN
To: NATIONAL TECHNOLOGY & ENGINEERING SOLUTIONS OF SANDIA, LLC
Reel/Frame 050700/0912 →
CONFIRMATORY LICENSE Recorded Oct 3, 2019
From: NATIONAL TECHNOLOGY & ENGINEERING SOLUTIONS OF SANDIA, LLC
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 050614/0851 →