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Emission of terahertz electromagnetic waves driven by an external current in intrinsic Josephson junctions

机译:固有约瑟夫逊结中由外部电流驱动的太赫兹电磁波的发射

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We propose a mechanism for the strong emission of terahertz wave recently observed in current-biased mesa-shaped Bi2Sr2Ca-Cu2O8 single crystals by Ozyuzer et al. When the mesa length is approximately equal to the c-axis penetration depth and an external current is applied along the c-axis of the mesa-crystal, the Josephson oscillation can cause the resonance excitation of cavity-mode of the transverse Josephson plasma in the voltage state. When the oscillating electric and magnetic fields excited inside the mesa have antinodes at the surfaces, the electromagnetic wave with Josephson frequency is strongly emitted into the vacuurr(. We evaluate the frequency and power of emitted electromagnetic wave to be respectively of the orders of THz and 10(3) W/cm(3) near the retrapping region.
机译:我们提出了一种由Ozyuzer等人最近在电流偏置的台面形Bi2Sr2Ca-Cu2O8单晶中观察到的太赫兹波强发射的机制。当台面长度大约等于c轴穿透深度并且沿台面晶体的c轴施加外部电流时,约瑟夫森振荡会引起横向约瑟夫森等离子体的腔模共振激发。电压状态。当台面内部激发的振荡电场和磁场在表面上具有波腹时,具有约瑟夫森频率的电磁波会强烈发射到vacuurr(。)中,我们估计发射电磁波的频率和功率分别为THz和THz的数量级。再陷区附近为10(3)W / cm(3)。

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