Claims
- 1. A solid-state laser gain medium, comprising:
- a crystal of the composition M.sub.5 (VO.sub.4).sub.3 X, wherein M is at least one divalent cation selected from Sr.sup.2+, Mg.sup.2+, Ba.sup.2+, Cd.sup.2+, or Pb.sup.2+, or at least one combination of monovalent and trivalent ions, selected from Li.sup.+, Na.sup.+, K.sup.+, Rb.sup.+, with Sc.sup.3+, Y.sup.3+, La.sup.3+, Gd.sup.3+, Lu.sup.3+, or other RE.sup.3+ (rare earth), and X is at least one singly-charged anion selected from F.sup.-, Cl.sup.-, Br.sup.-, I.sup.-, OH.sup.-, or one-half the fraction of a doubly-charge anion selected from O.sup.2-, S.sup.2- ;
- one or more dopants included in the crystal, selected from rare earth ions, transition metal ions and actinide ions.
- 2. The optical material of claim 1, wherein the rare earth ions are selected from Ce, Pr, Nd, Pm, Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm, Yb, the transition metal ions are selected from Ti, V, Cr, Mn, Fe, Co, Ni, Cu, Rh, Mo, Pd, Ir, Pt, and the actinide ion is U.
- 3. The solid-state laser gain medium of claim 1, comprising a Sr.sub.5 (VO.sub.4).sub.3 F crystal.
- 4. The solid-state laser gain medium of claim 1, comprising a Nd-doped Sr.sub.5 (VO.sub.4).sub.3 F crystal.
- 5. The solid-state laser gain medium of claim 1, comprising an Yb-doped Sr.sub.5 (VO.sub.4).sub.3 F crystal.
- 6. The solid-state laser gain medium of claim 1, further comprising excitation means associated with the crystal for pumping the crystal.
- 7. The solid-state laser gain medium of claim 6, wherein the excitation means is a flashlamp, laser diode, or other laser source.
- 8. The solid-state laser gain medium of claim 6, further comprising cavity forming means surrounding the crystal to form a resonant laser cavity.
- 9. The solid-state laser gain medium of claim 8, further comprising a means of extracting energy from the cavity.
- 10. The solid-state laser gain medium of claim 8, further comprising an additional optical component selected from a wavelength tuning element, Q-switch, mode-locker, Pockels cell, or etalon placed in the cavity.
- 11. The solid-state laser gain medium of claim 1, wherein the vanadate ion is partially substituted with phosphate ions.
- 12. A solid state laser, comprising:
- a solid state laser gain medium, comprising:
- a crystal of the composition MS.sub.5 (VO.sub.4).sub.3 X, wherein M is at least one divalent cation selected from Sr.sup.2+, Mg.sup.2+, Ba.sup.2+, Cd.sup.2+, or Pb.sup.2+, or at least one combination of monovalent and trivalent ions, selected from Li.sup.+, Na.sup.+, K.sup.+, Rb.sup.+, with Sc.sup.3+, Y.sup.3+, La.sup.3+, Gd.sup.3+, Lu.sup.3+, or other RE.sup.3+ (rare earth), and X is at least one singly-charged anion selected from F.sup.-, Cl.sup.-, Br.sup.-, I.sup.-, OH.sup.-, or one-half the fraction of a doubly-charge anion selected from O.sup.2-, S.sup.2- ;
- one or more dopants included in the crystal, selected from rare earth ions, transition metal ions and actinide ions;
- excitation means associated with the gain medium for pumping the gain medium;
- cavity forming means surrounding the gain medium to form a resonant laser cavity;
- energy extraction means associated with the cavity forming means to remove laser energy from the cavity.
- 13. The solid state laser of claim 12, wherein the gain medium is Yb:Sr.sub.5 (VO.sub.4).sub.3 F.
- 14. The solid state laser of claim 12, wherein the gain medium is Nd:Sr.sub.5 (VO.sub.4).sub.3 F.
- 15. The solid state laser of claim 12, wherein the excitation means is a laser diode.
Government Interests
The United States Government has rights in this invention pursuant to Contract No. W-7405-ENG-48 between the United States Department of Energy and the University of California for the operation of Lawrence Livermore National Laboratory.
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Entry |
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L. H. Brixner et al., "Preparation and Properties of Some Strontium-Oxometallates," J. of Solid State Chem 2, pp. 55-60, (1970). |