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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Decay, amplification and absorption of initial terahertz pulse in resonant two-level medium based on noninteracting array of zigzag nanotubes and armchair nanoribbons
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Decay, amplification and absorption of initial terahertz pulse in resonant two-level medium based on noninteracting array of zigzag nanotubes and armchair nanoribbons

机译:基于Zigzag纳米管和扶手椅的非交互式阵列谐振两级介质初始太赫兹脉冲的衰减,放大和吸收

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摘要

Theoretical investigation and computer simulation of the evolution of terahertz (THz) radiation in a two-level resonance gain medium was carried out on the basis of Maxwell-Bloch equations, using the slowly varying amplitude approximation. The gain medium is based on a system of noninteracting parallel-oriented metallic carbon nanotubes and nanoribbons. Considering the Maxwell-Garnett theory (MGT), the effective dielectric function (EDF) of the medium was obtained. Due to the large nanotube dipole moment (or large value of oscillator strength) not only THz radiation occurs, but also a totality of periodic pulses generation. Results of simulation totally coincide with the theoretical ones. The equation for the phase by analogy with the self-induced transparency (SIT), taking into account the dissipative processes, was obtained. The obtained equation describes a mathematical pendulum, where friction force is proportional to the velocity and directed to the opposite of particle movement. The friction leads to the fact that the pendulum makes a full rotation around the axis or decays, depending on the absorption properties of a gain medium. It was shown that at the certain properties of a gain medium, the equation coincides with the well-known Sine-Gordon equation. It was obtained, that at the initial pumping 6 x 10(20) m(-3) and at the volume fraction of nanoparticles about 10(-7), the stationary value of radiation energy in a resonator is about 1 J/m(3).
机译:在Maxwell-Bloch方程的基础上,使用缓慢变化的幅度近似来执行两级谐振增益介质中的太赫兹(THz)辐射演化的理论研究和计算机模拟。增益介质基于非交互式的平行定向金属碳纳米管和纳米的系统。考虑到Maxwell-Garnett理论(MGT),获得了培养基的有效介电功能(EDF)。由于纳米管偶极矩(或振荡器强度的大值),不仅发生了THz辐射,而且是周期性脉冲的总产生。模拟结果与理论上完全一致。获得了通过类比与自诱导透明度(SIT)的相位的等式,考虑到耗散过程。所获得的等式描述了一种数学摆锤,其中摩擦力与速度成比例,并指向与颗粒运动的相反。摩擦导致摆动摆在轴线或衰变周围完全旋转,这取决于增益介质的吸收特性。结果表明,在增益介质的某些特性,等式与众所周知的正弦 - 戈登方程一致。获得的是,在初始泵送6 x 10(20)m(-3)和约10(-7)的纳米颗粒的体积分数时,谐振器中的辐射能量的静止值约为1J / m( 3)。

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