Dual-wavelength Q-switched Er:YAG laser around 1.6 μm for methane differential absorption lidar
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[1] Petr Koranda,et al. LiNbO3 Pockels cell for Q‐switch of Er:YAG laser , 2004 .
[2] Haro Fritsche,et al. Ultrahigh brightness laser diode modules with narrow linewidth for resonant pumping Er:YAG lasers operating at 1.6 μm , 2012, Other Conferences.
[3] Haro Fritsche,et al. Efficient Er:YAG lasers at 1645.55 nm, resonantly pumped with narrow bandwidth diode laser modules at 1532 nm, for methane detection , 2013, Photonics West - Lasers and Applications in Science and Engineering.
[4] Igor Kudryashov,et al. Resonantly diode-pumped Er:YAG laser: 1470-nm versus 1530-nm CW pumping case , 2009, Defense + Commercial Sensing.
[5] Gerhard Ehret,et al. Optical parametric oscillators and amplifiers for airborne and spaceborne active remote sensing of CO2 and CH4 , 2011, Remote Sensing.
[6] Gang Li,et al. The HITRAN 2008 molecular spectroscopic database , 2005 .
[7] S. Bigotta,et al. Q-switched resonantly diode-pumped Er3+:YAG laser with fiberlike geometry. , 2010, Optics letters.
[8] Q. Ye,et al. Continuous-wave and Q-switched operation of a resonantly pumped U-shaped Er:YAG laser at 1617 and 1645 nm , 2013 .
[9] W. Clarkson,et al. Influence of energy-transfer-upconversion on threshold pump power in quasi-three-level solid-state lasers. , 2009, Optics express.
[10] M. Hovland,et al. The geological methane budget at Continental Margins and its influence on climate change , 2002 .
[11] M. Eichhorn,et al. High-power resonantly diode-pumped CW Er3+:YAG laser , 2008 .
[12] M. Wirth,et al. Sensitivity studies for a space-based methane lidar mission , 2011 .
[13] Ran Wang,et al. A fiber laser resonantly pumped 1617 nm bow-tie ring resonator Er:YAG laser , 2013 .
[14] Da-Wun Chen,et al. Multiwatt continuous-wave and Q-switched Er:YAG lasers at 1645 nm: performance issues. , 2009, Optics letters.
[15] Room temperature power scalability of the diode-pumped Er:YAG eye-safe laser , 2009, 2009 Conference on Lasers and Electro-Optics and 2009 Conference on Quantum electronics and Laser Science Conference.
[16] X. Xu,et al. Efficient Er:LuYAG laser operating at 1648 and 1620 nm , 2012 .
[17] K. O. White,et al. Coincidence of Er : YAG laser emission with methane absorption at 1645.1 nm , 1972 .
[18] Mingjian Wang,et al. Efficient 1645 nm continuous-wave and Q-switched Er:YAG laser pumped by 1532 nm narrow-band laser diode. , 2011, Optics express.