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Studies on High Power THz Radiation using Nanosecond Pulse in Oversized Relativistic Backward Wave Oscillator

机译:超大型相对主义反向波振荡器中纳秒脉冲高功率THz辐射研究

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摘要

To design high power oversized Relativistic Backward Wave Oscillator (RBWO) which can generate GW-level Power in THz frequency, numerical studies such as finite difference time domain (FDTD) and particle in cell (PIC) were performed. 0.1GW at 0.1THz was estimated. The Oversized BWO which means relatively wide cross-section space (oversized) to decrease power density comparing with fundamental BWO is made up of slow wave structure (SWS) of rectangular type wall radius designed to generate wave on surface with strong interaction between electron beam and wave under intense fields at 500 kV-1.5kA, 100ns pulse in the relativistic range. In the meantime, the type of THz EM waves radiated antenna is COaxial Beam Rotating Antenna (COBRA). The antenna lens is designed to be matched with the W-band frequency and the thickness of lens is decided by theoretically calculation and results of numerical methods. On the basis of the results from numerical studies, it is designed and fabricated to generate radiated 0.1GW-0.1THz for 30ns, electromagnetic wave on the range of millimeter wave through these studies.
机译:为了设计高功率过大的相对论反向波振荡器(RBWO),其可以在THz频率下产生GW级功率,进行数值研究,例如细胞(PIC)中的有限差时域(FDTD)和颗粒。估计0.1℃下0.1gW。意味着横截面空间(超大)的超大横截面空间(超大),以降低与基础BWO的功率密度,由矩形壁半径的慢波结构(SWS)组成,该矩形壁半径旨在在表面上产生波浪和电子束之间的强烈相互作用。在激烈的田地下波在500 kV-1.5ka,100ns脉冲中的相对论范围。同时,THz EM波的类型辐射天线是同轴束旋转天线(COBRA)。天线透镜设计成与W波段频率匹配,并且在理论上计算和数值方法的结果决定镜片的厚度。根据数值研究的结果,设计和制造以产生30ns的辐射0.1gW-0.1THz,通过这些研究在毫米波范围内的电磁波。

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