10 Characterization Techniques for Planar Optical Microresonators
نویسندگان
چکیده
Optical microresonators that are coupled to optical waveguides often behave quite similar to Fabry-Perot resonators. After summarising key properties of such resonators, three characterization methods will be discussed. The first involves the analysis of transmission and reflection spectra, from which important parameters like (waveguide) loss and coupling or reflection coefficients can be extracted. The second method is called transmission-based scanning near-field optical microscopy (T-SNOM) which allows to map out the intensity distribution inside a high-Q resonator with subwavelength resolution. For such resonators conventional SNOM suffers from inaccuracies introduced by the disturbing effect of the presence of the probe on the field distribution. T-SNOM avoids this problem by exploiting this disturbing effect. The third method is most applicable to large-size (many wavelengths across) resonators. It involves simultaneous analysis of scattered light and transmission/reflection spectra in order to relate spectral features to large-scale field distributions inside the resonator. Together, these techniques form a convenient toolbox for characterizing many different planar optical microresonators.
منابع مشابه
AFM characterization of out-of-plane high frequency microresonators
The feasibility of characterization of vertically driven high frequency microresonators using atomic force microscopy (AFM) has been successfully demonstrated to easily measure resonant frequency of high frequency resonator. The distinctive achievement of this technique is the rapid, direct characterization of resonant frequency and quality factor for structures that cannot be readily character...
متن کاملCoupling Ideality of Integrated Planar High-Q Microresonators
Chip-scale optical microresonators with integrated planar optical waveguides are useful building blocks for linear, nonlinear, and quantum-optical photonic devices alike. Loss reduction through improving fabrication processes results in several integrated microresonator platforms attaining quality (Q) factors of several millions. Beyond the improvement of the quality factor, the ability to oper...
متن کاملControling the coupling properties of active ultrahigh-Q WGM microcavities from undercoupling to selective amplification
Ultrahigh-quality (Q) factor microresonators have a lot of applications in the photonics domain ranging from low-threshold nonlinear optics to integrated optical sensors. Glass-based whispering gallery mode (WGM) microresonators are easy to produce by melting techniques, however they suffer from surface contamination which limits their long-term quality factor to a few 10(8). Here we show that ...
متن کاملSingle Mode Lasing from Hybrid Hemispherical Microresonators
Enormous attention has been paid to optical microresonators which hold a great promise for microlasers as well as fundamental studies in cavity quantum electrodynamics. Here we demonstrate a three-dimensional (3D) hybrid microresonator combining self-assembled hemispherical structure with a planar reflector. By incorporating dye molecules into the hemisphere, optically pumped lasing phenomenon ...
متن کاملساختار مد طولی برای تشدیدگر حلقوی ناهم سطح
The structure of longitudinal modes of a passively Q-switched, non-planar unidirectional ring-resonator,with Nd:YAG active medium is described in this article. Two different techniques are used to study the longitudinal mode structure of the laser resonator. At first, the fast-fourier transform technique is applied for analyzing the mode beating of the optical fields by intensity frequency str...
متن کامل