학술논문

Intracavity THz Polariton Source Using a Shallow-Bounce Configuration
Document Type
Periodical
Source
IEEE Transactions on Terahertz Science and Technology IEEE Trans. THz Sci. Technol. Terahertz Science and Technology, IEEE Transactions on. 9(3):237-242 May, 2019
Subject
Fields, Waves and Electromagnetics
Crystals
Absorption
Resonant frequency
Laser excitation
Optical resonators
Surface emitting lasers
Photonics
Laser resonator
nonlinear optics
parametric oscillator
solid-state lasers
stimulated polariton scattering (SPS)
terahertz generation
Language
ISSN
2156-342X
2156-3446
Abstract
We demonstrate a frequency-tunable THz polariton source based on stimulated polariton scattering (SPS) in MgO:LiNbO 3 . The system produces THz emission using an intracavity shallow-bounce configuration. Continuously tunable THz emission across the frequency range of 1.05–2.89 THz is demonstrated, and a maximum average THz power of 67.5 μ W is detected at 1.34 THz, when pumped with 15.1 W from a continuous-wave laser diode at 880 nm. In contrast to conventional linear configurations, this shallow-bounce configuration offers enhanced THz output power across the systems' entire THz frequency-tuning range, especially at higher frequencies. This is achieved through careful consideration of the THz generation volume, and locating it as close as possible to the emitting surface of the polariton-active crystal, thereby minimizing the deleterious effect of absorption within the SPS crystal. In addition to experimental data, the degree of THz enhancement offered using this configuration, in contrast to a linear configuration is also investigated mathematically.