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Linear and nonlinear optical properties of graphene nanodisk out of equilibrium

机译:石墨烯纳米盘的线性和非线性光学性质不平衡

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摘要

We explore linear and nonlinear optical polarizability of graphene nanodisk in nonequilibrium steady-state. By using nonequilibrium Green's function formalism, we extend sum-over-state method of calculation of optical polarizabilities to nonequilibrium state for obtaining linear and nonlinear optical polarizability of current carrying clusters or molecules with interacting electrons. We apply this method for graphene nanodisks and use Hartree-Fock approximation to take into account the electron-electron interaction and utilize extended Su-Schrieffer-Heeger model to include the effect of lattice distortion and calculate first and third order polarizability of graphene nanodisks in equilibrium and nonequilibrium state. Our consideration shows that graphene nanodisks, in equilibrium state, have significant linear and nonlinear optical properties due to the planarity shape of nanodisks and existence of delocalized π-electrons. Also we find that optical polarizabilities of graphene nanodisks, like electrical current and their dimerization, vary step-like versus bias voltage and can be tuned by allowing the current to pass through them. It is found that these variations for large-size nanodisks are more evident and take place in lower bias voltage, specially their third harmonic generation which increases considerably, so the current carrying large-size graphene nanodisks can be prominent for nonlinear application in photonic devices.
机译:我们探索了石墨烯纳米盘在非平衡稳态下的线性和非线性光学极化率。通过使用非平衡格林函数形式主义,我们将计算光极化率的总和状态方法扩展到非平衡态,以获得载流簇或具有相互作用电子的分子的线性和非线性光极化率。我们将此方法应用于石墨烯纳米磁盘,并使用Hartree-Fock近似法考虑电子-电子相互作用,并利用扩展的Su-Schrieffer-Heeger模型包括晶格畸变的影响,并计算平衡状态下石墨烯纳米磁盘的一阶和三阶极化率。和非平衡状态。我们的研究表明,处于平衡状态的石墨烯纳米盘由于纳米盘的平面形状和离域π电子的存在而具有显着的线性和非线性光学性质。我们还发现,石墨烯纳米盘的光学极化率,例如电流及其二聚化,随着偏压的变化呈阶梯状变化,并且可以通过允许电流通过而进行调整。发现大尺寸纳米盘的这些变化更为明显,并且发生在较低的偏置电压下,特别是其三次谐波的产生大大增加,因此载流大尺寸石墨烯纳米盘的电流对于光子器件中的非线性应用可能是突出的。

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