High-finesse Fabry-Perot cavities with bidimensional SiN photonic-crystal slabs
arXiv:1603.07200 · doi:10.1038/lsa.2016.190
Abstract
Light scattering by a two-dimensional photonic crystal slab (PCS) can result in dramatic interference effects associated with Fano resonances. Such devices offer appealing alternatives to distributed Bragg reflectors or filters for various applications such as optical wavelength and polarization filters, reflectors, semiconductor lasers, photodetectors, bio-sensors, or non-linear optical components. Suspended PCSs also find natural applications in the field of optomechanics, where the mechanical modes of a suspended slab interact via radiation pressure with the optical field of a high finesse cavity. The reflectivity and transmission properties of a defect-free suspended PCS around normal incidence can be used to couple out-of-plane mechanical modes to an optical field by integrating it in a free space cavity. Here, we demonstrate the successful implementation of a PCS reflector on a high-tensile stress SiN nanomembrane. We illustrate the physical process underlying the high reflectivity by measuring the photonic crystal band diagram. Moreover, we introduce a clear theoretical description of the membrane scattering properties in the presence of optical losses. By embedding the PCS inside a high-finesse cavity, we fully characterize its optical properties. The spectrally, angular, and polarization resolved measurements demonstrate the wide tunability of the membrane's reflectivity, from nearly 0 to 99.9470~ 0.0025 \%, and show that material absorption is not the main source of optical loss. Moreover, the cavity storage time demonstrated in this work exceeds the mechanical period of low-order mechanical drum modes. This so-called resolved sideband condition is a prerequisite to achieve quantum control of the mechanical resonator with light.
References in corpus (9)
- Strong dispersive coupling of a high finesse cavity to a micromechanical membrane
- Resolved Sideband Cooling of a Micromechanical Oscillator
- Observation of Radiation Pressure Shot Noise on a Macroscopic Object
- Mechanical Resonators for Quantum Optomechanics Experiments at Room Temperature
- Quasi-two-dimensional optomechanical crystals with a complete phononic bandgap
- Silicon nitride membrane resonators at millikelvin temperatures with quality factors exceeding
- Microfabrication of large area high-stress silicon nitride membranes for optomechanical devices
- From membrane-in-the-middle to mirror-in-the-middle with a high-reflectivity sub-wavelength grating
- 2D photonic-crystal optomechanical nanoresonator
Cited by in corpus (30)
- Spin-Preserving Chiral Photonic Crystal Mirror
- Integrated optomechanical arrays of two high reflectivity SiN membranes
- Searching for vector dark matter with an optomechanical accelerometer
- Centimeter-scale suspended photonic crystal mirrors
- Entanglement-enhanced optomechanical sensor array for dark matter searches
- Cavity Quantum Electrodynamics with Frequency-Dependent Reflectors
- Fabry-Pérot Cavity Formed with Dielectric Metasurfaces in a Hollow-Core Fiber
- Cavity Optomechanics with Photonic Bound States in the Continuum
- Suspended photonic crystal membranes in AlGaAs heterostructures for integrated multi-element optomechanics
- Integrated optical force sensors using focusing photonic crystal arrays
- Optical spatial differentiation with suspended subwavelength gratings
- Flexure-Tuned Membrane-at-the-Edge Optomechanical System
- Microcavities with suspended subwavelength structured mirrors
- Polarimetric analysis of stress anisotropy in nanomechanical silicon nitride resonators
- Manipulation of optomechanically induced transparency and absorption by indirectly coupling to an auxiliary cavity mode
- Phononically shielded photonic-crystal mirror membranes for cavity quantum optomechanics
- Optomechanical cooling with coherent and squeezed light: the thermodynamic cost of opening the heat valve
- Integrated microcavity optomechanics with a suspended photonic crystal mirror above a distributed Bragg reflector
- Efficient microwave frequency conversion mediated by the vibrational motion of a silicon nitride nanobeam oscillator
- Suspended silicon nitride thin films with enhanced and electrically tunable reflectivity
- Profilometry and stress analysis of suspended nanostructured thin films
- Narrow-linewidth Fano microcavities with resonant subwavelength grating mirror
- Mechanical mode engineering with orthotropic metamaterial membranes
- Mechanical investigations of free-standing SiN membranes patterned with one-dimensional photonic crystal structures
- Polarization-independent optical spatial differentiation with a doubly-resonant one-dimensional guided-mode grating
- Highly reflective and high- thin resonant subwavelength gratings
- Light-matter interactions in multi-element resonators
- Optical microcavity with a pair of suspended resonant mirrors
- Engineering strong coupling in ultra-compact photonic crystal/2D material platforms
- Collimation and finite-size effects in suspended resonant guided-mode gratings