Low intensity noise and narrow line-width diode laser light at 540 nm

L Wang, R Tamaki, K Kasai, Y Okada-Shudo… - Laser Physics …, 2015 - iopscience.iop.org
L Wang, R Tamaki, K Kasai, Y Okada-Shudo, M Watanabe, Y Zhang
Laser Physics Letters, 2015iopscience.iop.org
We present a convenient method to generate high quality single-frequency green light at a
wavelength of 540 nm. It consists of a noise suppressed external cavity diode laser at a
wavelength of 1080 nm by optical filtering and resonant optical feedback, and a frequency
doubling of the fundamental light with an a-cut KTP crystal. Highly efficient conversion is
realized by type II non-critical phase matching. A stable single-frequency operation with a
maximum power of about 20 mW is performed for more than 3 h. Both the intensity noise and …
Abstract
We present a convenient method to generate high quality single-frequency green light at a wavelength of 540 nm. It consists of a noise suppressed external cavity diode laser at a wavelength of 1080 nm by optical filtering and resonant optical feedback, and a frequency doubling of the fundamental light with an a-cut KTP crystal. Highly efficient conversion is realized by type II non-critical phase matching. A stable single-frequency operation with a maximum power of about 20 mW is performed for more than 3 h. Both the intensity noise and line-width reach the level of a monolithic nonplanar ring laser, which is well known for its extraordinarily narrow line-width and extremely low noise among available single-frequency operating lasers.
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