Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Selective Photonic-Structure Cavity for High-Cyclotron-Harmonic Gyrotrons

View through CrossRef
Typically, cavities of sub-terahertz electron cyclotron masers (gyrotrons) have oversized dimensions. That leads to a problem of the dense mode spectrum and, as a result, to a problem of the mode selectivity in the process of realization of gyrotrons operating at high cyclotron harmonics. Open (mirror) type systems have a much sparser mode spectrum than closed-type systems. We suggest a way to further reduce the mode spectrum by implementing a cavity based on a photonic structure formed by two parallel corrugated mirrors, which are considerably offset from being in front of each other so that no mode can be supported by mirror reflection from them. The operating mode is contained by backward reflection from the corrugated mirrors based on the (−1)st order diffraction mechanism. The proposed system has intrinsic dispersion compensation properties which make it usable in a wide (~20%) frequency band. Simulated characteristics of a 2D prototype are presented and possible application for a gyrotron operating at a harmonic of the cyclotron frequency is discussed.
Title: Selective Photonic-Structure Cavity for High-Cyclotron-Harmonic Gyrotrons
Description:
Typically, cavities of sub-terahertz electron cyclotron masers (gyrotrons) have oversized dimensions.
That leads to a problem of the dense mode spectrum and, as a result, to a problem of the mode selectivity in the process of realization of gyrotrons operating at high cyclotron harmonics.
Open (mirror) type systems have a much sparser mode spectrum than closed-type systems.
We suggest a way to further reduce the mode spectrum by implementing a cavity based on a photonic structure formed by two parallel corrugated mirrors, which are considerably offset from being in front of each other so that no mode can be supported by mirror reflection from them.
The operating mode is contained by backward reflection from the corrugated mirrors based on the (−1)st order diffraction mechanism.
The proposed system has intrinsic dispersion compensation properties which make it usable in a wide (~20%) frequency band.
Simulated characteristics of a 2D prototype are presented and possible application for a gyrotron operating at a harmonic of the cyclotron frequency is discussed.

Related Results

Two-dimensional function photonic crystal
Two-dimensional function photonic crystal
Photonic crystal is a kind of periodic optical nanostructure consisting of two or more materials with different dielectric constants, which has attracted great deal of attention be...
Design of a second cyclotron harmonic gyrotron oscillator with photonic band-gap cavity
Design of a second cyclotron harmonic gyrotron oscillator with photonic band-gap cavity
A photonic band-gap cavity (PBGC) gyrotron with a frequency of about 98 GHz is designed. Theoretical analyses and numerical calculations are made for the PBGC operating at fundamen...
Development of high-power gyrotrons with gradually tapered cavity
Development of high-power gyrotrons with gradually tapered cavity
In high power gyrotrons, the parasitic modes coupled with the operating mode cannot be avoided in the beam-wave interaction. These parasitic modes will decrease the efficiency of t...
A tunable narrow-band plasma photonic crystal filter based on bound state
A tunable narrow-band plasma photonic crystal filter based on bound state
Photonic crystals are widely used in a class of narrow-band frequency selective filter due to their excellent ability to control electromagnetic waves, in which the working frequen...
Analysis of photonic crystal transmission properties by the precise integration time domain
Analysis of photonic crystal transmission properties by the precise integration time domain
Photonic crystals are materials patterned with a periodicity in the dielectric constant, which can create a range of forbidden frequencies called as a photonic band gap. The photon...
Fiber-cavity enhanced and high-fidelity optical memory in cold atom ensemble
Fiber-cavity enhanced and high-fidelity optical memory in cold atom ensemble
Entanglement between a photon and an atomic memory is an important tool for quantum repeater research. By using the Duan-Lukin-Cirac-Zoller (DLCZ) process in the atomic ensemble, q...
Construction of Optical Topological Cavities Using Photonic Crystals
Construction of Optical Topological Cavities Using Photonic Crystals
A novel design of the Fabry–Pérot optical cavity is proposed, utilizing both the topological interface state structures and photonic bandgap materials with a controllable reflectio...
Modelling and analysis of LCC‐HVDC converter station for harmonic coupling of AC/DC power grid during geomagnetic storm
Modelling and analysis of LCC‐HVDC converter station for harmonic coupling of AC/DC power grid during geomagnetic storm
AbstractIn this paper, the problem of harmonic coupling between the converter transformer and the converter under the action of geomagnetically induced current (GIC) is proposed to...

Back to Top