2008CaltechTHESIS (California Institute of Technology)Open access

Quasi-optical components for millimeter and submillimeter waves

J.‐C. Chiao

Open full text 1 citations

Abstract

NOTE: Text or symbols not renderable in plain ASCII are indicated by [...]. Abstract is included in .pdf document. Power-combining schemes involving planar grids of solid-state devices or passive elements quasi-optically coupled in free space are an efficient means of combining power that makes them ideal for millimeter/submillimeter-wave applications by eliminating waveguide sidewall losses and machining difficulties. Three quasi-optical components including grid frequency multipliers, microswitch beam-steering grids and evanescent-wave couplers are presented. A terahertz grid frequency doubler using a 6x6 diode-grid periodically loaded with planar Schottky diodes has been developed. A peak output power of 330[...] was measured at 1.00 THz for 2.42-[...] 500-GHz input pulses with a peak power of 3.3 W. The microswitch beam-steering grid has potential advantages over mechanical-scanning devices or active beam-steering reflectors based on diodegrids such as lower losses and simple control circuits at submillimeter wavelengths. Micromechanical electrostatically-controlled [...]-membrane switches have been fabricated on silicon wafers to provide binary reactance control. Simulations predict that a 4-bit controlled 10-layer microswitch beam-steering grid can have a phase-shift resolution of 22.5[...] over 360[...] with a maximum loss of 1.6 dB and a maximum phase error of 5[...] at 240 GHz. The metal-mesh evanescent-wave couplers have been demonstrated to have wider bandwidths and larger modulations than Fabry-Perot couplers. The evanescent-wave coupling effect has been studied and used to increase the efficiency of an optically-controlled amplitude-modulator at 56.5 GHz.

Open-access reader

About this research paper

What this paper is about

NOTE: Text or symbols not renderable in plain ASCII are indicated by [...]. Abstract is included in .pdf document. Power-combining schemes involving planar grids of solid-state devices or passive elements quasi-optically coupled in free space are an efficient means of combining power that makes them ideal for millimeter/submillimeter-wave applications by eliminating waveguide sidewall losses and machining difficulties. Three quasi-optical components including grid frequency multipliers, microswitch beam-steering grids and evanescent-wave couplers are presented. A terahertz grid frequency doubler using a 6x6 diode-grid periodically loaded with planar Schottky diodes has been developed. A peak output power of 330[...] was measured at 1.00 THz for 2.42-[...] 500-GHz input pulses with a peak power of 3.3 W. The microswitch beam-steering grid has potential advantages over mechanical-scanning devices or active beam-steering reflectors based on diodegrids such as lower losses and simple control circuits at submillimeter wavelengths. Micromechanical electrostatically-controlled [...]-membrane switches have been fabricated on silicon wafers to provide binary reactance control. Simulations predict that a 4-bit controlled 10-layer microswitch beam-steering grid can have a phase-shift resolution of 22.5[...] over 360[...] with a maximum loss of 1.6 dB and a maximum phase error of 5[...] at 240 GHz. The metal-mesh evanescent-wave couplers have been demonstrated to have wider bandwidths and larger modulations than Fabry-Perot couplers. The evanescent-wave coupling effect has been studied and used to increase the efficiency of an optically-controlled amplitude-modulator at 56.5 GHz.

Why it matters

OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

NOTE: Text or symbols not renderable in plain ASCII are indicated by [...]. Abstract is included in .pdf document. Power-combining schemes involving planar grids of solid-state devices or passive elements quasi-optically coupled in free space are an efficient means of combining power that makes them ideal for millimeter/submillimeter-wave applications by eliminating waveguide sidewall losses and machining difficulties. Three quasi-optical components including grid frequency multipliers, microswitch beam-steering grids and evanescent-wave couplers are presented. A terahertz grid frequency doubler using a 6x6 diode-grid periodically loaded with planar Schottky diodes has been developed. A peak output power of 330[...] was measured at 1.00 THz for 2.42-[...] 500-GHz input pulses with a peak power of 3.3 W. The microswitch beam-steering grid has potential advantages over mechanical-scanning devices or active beam-steering reflectors based on diodegrids such as lower losses and simple control circuits at submillimeter wavelengths. Micromechanical electrostatically-controlled [...]-membrane switches have been fabricated on silicon wafers to provide binary reactance control. Simulations predict that a 4-bit controlled 10-layer microswitch beam-steering grid can have a phase-shift resolution of 22.5[...] over 360[...] with a maximum loss of 1.6 dB and a maximum phase error of 5[...] at 240 GHz. The metal-mesh evanescent-wave couplers have been demonstrated to have wider bandwidths and larger modulations than Fabry-Perot couplers. The evanescent-wave coupling effect has been studied and used to increase the efficiency of an optically-controlled amplitude-modulator at 56.5 GHz.

Key concepts: Millimeter, Submillimeter wave, Submillimeter Array, Physics, Extremely high frequency, Optics, Astronomy, Star formation

Related papers

Back to paper searchBrowse research topicsOriginal source
Quasi-optical components for millimeter and submillimeter waves — Research Paper | ScholarLens