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physics.optics2026

Dual terahertz frequency combs for photonic RF readout of refractive index sensing with frequency multiplication and active-dummy temperature compensation

Masayuki Higaki, Yoshiaki Nakajima, Shuji Taue +4

We present a unified refractive index (RI) sensing platform that integrates THz-comb-based frequency multiplication with dual-comb active-dummy temperature compensation. In convent…

physics.optics2025

Microcomb-referenced photonic stabilization of resonant tunneling diode terahertz oscillators

Miezel Talara, Yu Tokizane, Tatsunoshin Mori +7

We demonstrate a compact stabilization scheme for terahertz (THz) sources by exploiting the complementary advantages of microresonator-based optical frequency combs (microcombs) an…

physics.optics2025

Direct fiber-coupled soliton microcomb system with enhanced stability and reproducibility via high numerical-aperture polarization-maintaining single-mode fibers and temperature control

Miezel Talara, Yu Tokizane, Kodai Yamaji +6

We propose a compact and robust system architecture for soliton microcomb generation, based on two key techniques: direct fiber coupling using high numerical-aperture polarization-…

physics.optics2024

Reduction of temperature drift in refractive-index-sensing optical frequency comb by active-dummy compensation of dual-comb configuration

Shogo Miyamura, Masayuki Higaki, Shuji Taue +5

Refractive-index (RI) sensing plays a pivotal role in various domains, encompassing applications like glucose sensing, biosensing, and gas detection. Despite the advantages of opti…