IP Library Granted Patent US 7,693,192
Granted Patent B2
US 7,693,192 · App. 11/766,834 · Granted Apr 6, 2010

Mode-locked laser device

Assignee: FUJIFILM Corporation
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Quick Facts
Patent No.
US 7,693,192
App. No.
11/766,834
Granted
Apr 6, 2010
Kind
B2
Abstract

A mode-locked laser device includes a Fabry-Perot resonator, a mode-locking element disposed within the resonator, a solid-state laser medium disposed within the resonator, and exciting means for applying excitation light to the solid-state laser medium. The opposite ends of the resonator, the mode-locking element and the solid-state laser medium are disposed to provide an average beam diameter of lasing light of not more than 150 μm on the mode-locking element and an average beam diameter of the lasing light of not more than 200 μm within the solid-state laser medium.

Claims (30)

1. A mode-locked laser device comprising:

a Fabry-Perot resonator;

a mode-locking element disposed within the resonator;

a solid-state laser medium disposed within the resonator;

an exciting means for applying excitation light to the solid-state laser medium; and

a dichroic mirror for reflecting the excitation light and transmitting lasing light, wherein:

the dichroic mirror is disposed within the resonator, the exciting means applies the excitation light to the resonator from a direction crossing the optical axis of the resonator,

the exciting means directs the excitation light to the dichroic mirror and the dichroic mirror reflects the excitation light toward the solid-state laser medium to apply the excitation light to the solid-state laser medium,

opposite ends of the resonator, the mode-locking element and the solid-state laser medium are disposed to provide an average beam diameter of the lasing light of not more than 150 μm on the mode-locking element and an average beam diameter of the lasing light of not more than 200 μm within the solid-state laser medium, and

the resonator mirror forming one of the ends of the resonator is provided with a coating having a negative group velocity distribution to provide a zero or less group velocity distribution for the entire resonator.

2. The mode-locked laser device as claimed in claim 1 , wherein the average beam diameter of the lasing light on the mode-locking element is not more than 100 μm.

3. The mode-locked laser device as claimed in claim 1 , wherein the mode-locking element and the solid-state laser medium are disposed in the vicinity of a beam waist of the lasing light.

4. The mode-locked laser device as claimed in claim 1 , wherein output light has a lasing wavelength corresponding to a wavelength of a peak in fluorescence spectrum of the solid-state laser medium, four-level system lasing being performed at the wavelength.

5. The mode-locked laser device as claimed in claim 1 , wherein the mode-locking element comprises a saturable absorber mirror and forms one of the ends of the resonator.

6. The mode-locked laser device as claimed in claim 1 , wherein the exciting means is formed only by a semiconductor laser for outputting the excitation light and a single lens for condensing the excitation light onto the solid-state laser medium.

7. A mode-locked laser device comprising:

a Fabry-Perot resonator;

a mode-locking element disposed within the resonator;

a solid-state laser medium disposed within the resonator;

an exciting means for applying excitation light to the solid-state laser medium, and

a dichroic mirror for reflecting the excitation light and transmitting lasing light, wherein:

the dichroic mirror is disposed within the resonator,

the exciting means applies the excitation light to the resonator from a direction crossing the optical axis of the resonator,

the exciting means directs the excitation light to the dichroic mirror and the dichroic mirror reflects the excitation light toward the solid-state laser medium to apply the excitation light to the solid-state laser medium,

the solid-state laser medium and the mode-locking element are disposed in the vicinity of a beam waist of the lasing light with a distance between the solid-state laser medium and the mode-locking element being less than ½ of the length of the resonator, and

the resonator mirror forming one of the ends of the resonator is provided with a coating having a negative group velocity distribution to provide a zero or less group velocity distribution for the entire resonator.

8. The mode-locked laser device as claimed in claim 7 , wherein the average beam diameter of the lasing light on the mode-locking element is not more than 100 μm.

9. The mode-locked laser device as claimed in claim 7 , wherein output light has a lasing wavelength corresponding to a wavelength of a peak in fluorescence spectrum of the solid-state laser medium, four-level system lasing being performed at the wavelength.

10. The mode-locked laser device as claimed in claim 7 , wherein the mode-locking element comprises a saturable absorber mirror and forms one of the ends of the resonator.

11. The mode-locked laser device as claimed in claim 7 , wherein the exciting means is formed only by a semiconductor laser for outputting the excitation light and a single lens for condensing the excitation light onto the solid-state laser medium.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 22, 2007
From: ADACHI, TAKASHI; YAMAZOE, SHOGO
To: FUJIFILM CORPORATION
Reel/Frame 019467/0678 →
Priority Claims (2)
JP 2006-172167 · Jun 22, 2006 · national
JP 2007-160998 · Jun 19, 2007 · national
Continuity (1)
Related Publication 20070297464A1 · Dec 27, 2007