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Tapered laser rods as a means of minimizing the path length of trapped barrel mode rays

Patent ·
OSTI ID:1175479
By tapering the diameter of a flanged barrel laser rod over its length, the maximum trapped path length of a barrel mode can be dramatically reduced, thereby reducing the ability of the trapped spontaneous emission to negatively impact laser performance through amplified spontaneous emission (ASE). Laser rods with polished barrels and flanged end caps have found increasing application in diode array end-pumped laser systems. The polished barrel of the rod serves to confine diode array pump light within the rod. In systems utilizing an end-pumping geometry and such polished barrel laser rods, the pump light that is introduced into one or both ends of the laser rod, is ducted down the length of the rod via the total internal reflections (TIRs) that occur when the light strikes the rod's barrel. A disadvantage of using polished barrel laser rods is that such rods are very susceptible to barrel mode paths that can trap spontaneous emission over long path lengths. This trapped spontaneous emission can then be amplified through stimulated emission resulting in a situation where the stored energy available to the desired lasing mode is effectively depleted, which then negatively impacts the laser's performance, a result that is effectively reduced by introducing a taper onto the laser rod.
Research Organization:
The Regents of the University of California, Oakland, CA (United States) ; Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)
Sponsoring Organization:
USDOE
DOE Contract Number:
W-7405-ENG-48
Assignee:
The Regents of the University of California (Oakland, CA)
Patent Number(s):
6,937,636
Application Number:
09/651,658
OSTI ID:
1175479
Country of Publication:
United States
Language:
English

References (3)

High-average-power diode-pumped Yb:YAG lasers conference April 2000
High-average-power 1-μm performance and frequency conversion of a diode-end-pumped Yb:YAG laser journal January 1998
183-W, M^2 = 24 Yb:YAG Q-switched laser journal January 1999

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