Resonant-cavity enhanced thermal emission
نویسندگان
چکیده
In this paper we present a vertical-cavity enhanced resonant thermal emitter—a highly directional, narrowband, tunable, partially coherent thermal source. This device enhances thermal emittance of a metallic or any other highly reflective structure to unity near a cavity resonant frequency. The structure consists of a planar metallic surface e.g., silver, tungsten , a dielectric layer on top of the metal that forms a vertical cavity, followed by a multilayer dielectric stack acting as a partially transparent cavity mirror. The resonant frequency can easily be tuned by changing the cavity thickness thus shifting resonant emission peak , while the angle at which the maximum emittance appears can be tuned as well by changing the number of dielectric stack layers. The thermal emission exhibits an extremely narrow angular emission lobe, suggesting increased spatial coherence. Furthermore, we show that we can enhance the thermal emission of an arbitrarily low-emittance material, choosing a properly designed thermal cavity, to near unity.
منابع مشابه
Photonic Crystals:Shaping the flow of Thermal Radiation
In this paper we explore theory, design, and fabrication of photonic crystal (PhC) based selective thermal emitters. In particular, we focus on tailoring spectral and spatial properties by means of resonant enhancement in PhC’s. Firstly, we explore narrow-band resonant thermal emission in photonic crystals exhibiting strong spectral and directional selectivity. We demonstrate two interesting de...
متن کاملResonant-Cavity-Enhanced Single Photon Avalanche Diodes
We present a resonant-cavity-enhanced Single Photon Avalanche Diode (SPAD) fabricated on a reflecting siliconon-insulator (SOI) substrate. The substrate incorporates a two period distributed Bragg reflector fabricated using a commercially available double-SOI process. The resonant-cavity-enhanced (RCE) SPAD detectors have peak photon detection efficiencies ranging from 41% at 780nm to 32% at 85...
متن کاملSpatially correlated light emission from a resonant-cavity light-emitting diode.
We present the angular-resolved intensity noise characteristics of a resonant-cavity light-emitting diode under quiet pumping conditions. Measurements by a sensitivity-enhanced lock-in amplifier detection scheme yielded a spatial anticorrelation between the intensity noise of the central and peripheral parts of the emitted far field. Proposals for possible explanations of this anticorrelation f...
متن کاملResonant cavity light-emitting diode
A novel concept of a light-emitting diode (LED) is proposed and demonstrated in which the active region of the device is placed in a resonant optical cavity. As a consequence, the optical emission from the active region is restricted to the modes of the cavity. Resonant cavity light-emitting diodes (RCLED) have higher spectral purity and higher emission intensity as compared to conventional lig...
متن کاملMetamaterial thermal emitters based on nanowire cavities for high-efficiency thermophotovoltaics
Metamaterial thermal emitters based on gold nanowire cavities on a gold substrate are designed to achieve a narrowband emission spectrum with the emission peak located slightly above the bandgap of photovoltaic (PV) cells, in order to improve the overall efficiency of thermophotovoltaic (TPV) systems. The metamaterial emitter made of gold nanowires embedded in an alumina host exhibits an effect...
متن کامل