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Existing conditions of full bandgaps and absolute negative refraction in metallic-dielectric photonic crystal
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作者 董建文 胡新华 汪河洲 《Chinese Physics B》 SCIE EI CAS CSCD 2007年第4期1057-1061,共5页
This paper has theoretically studied the characteristic frequencies of band structures in two-dimensional metallic- dielectric photonic crystals. It is demonstrated that a large filling fraction benefits the existence... This paper has theoretically studied the characteristic frequencies of band structures in two-dimensional metallic- dielectric photonic crystals. It is demonstrated that a large filling fraction benefits the existence of absolute photonic band gap, while a smaller filling fraction benefits an absolute negative refraction band. In addition, it also finds that the relation between the cut-off frequency of E-polarized wave and the filling fraction exceeding 10% is content with a linear increasing function, whose coefficients are exponential to the normalized lattice constant. These investigations have significant implications for tuning the operational frequencies to desired applications and manufacturing photonic crystals. 展开更多
关键词 metallic-dielectric photonic crystal absolute photonic band gap absolute negative refraction
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Realization of absolute negative refraction index by a photonic crystal using anisotropic dielectric material 被引量:1
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作者 方云团 欧阳征标 《Chinese Optics Letters》 SCIE EI CAS CSCD 2008年第1期57-60,共4页
A method to realize absolute negative refraction index -1 with a two-dimensional (2D) photonic crystal is presented by introducing dielectric anisotropy in the photonic crystal material. The band structures of E-pol... A method to realize absolute negative refraction index -1 with a two-dimensional (2D) photonic crystal is presented by introducing dielectric anisotropy in the photonic crystal material. The band structures of E-polarization mode and H-polarization mode can be adjusted by changing the parameters of materials. Thus the two modes with different polarizations have the same negative refraction index -1 for the same frequency. The results are demonstrated by numerical simulation based on the finite-difference time-domain (FDTD) method. 展开更多
关键词 Realization of absolute negative refraction index by a photonic crystal using anisotropic dielectric material mode EFS
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Resonant current in coupled inertial Brownian particles with delayed-feedback control 被引量:1
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作者 Tian-Fu Gao Zhi-Gang Zheng Jin-Can Chen 《Frontiers of physics》 SCIE CSCD 2017年第6期33-41,共9页
The transport of a walker in rocking feedback-controlled ratchets is investigated. The walker consists of two coupled "feet" that allow the interchange of the order of particles while the walker moves. In the underd... The transport of a walker in rocking feedback-controlled ratchets is investigated. The walker consists of two coupled "feet" that allow the interchange of the order of particles while the walker moves. In the underdamped case, tile deterministic dynamics of the walker in a tilted asymmetric ratchet with an external periodic force is considered. It is found that delayed feedback ratchets with a switching-on- and-off dependence of the states of the system can lead to absolute negative mobility. In such a novel phenomenon, the particles move against tile bias. Moreover, the walker can acquire a series of resonant steps for different values of the current. It is interesting to find that the resonant currents of the walker are induced by tile phase locked motion that corresponds to the synchronization of the motion with the change in the frequency of the external driving. These resonant steps can be well predicted in terms of time-space symmetry analysis, which is in good agreement with dynamics simulations. The transport performances can be optimized and controlled by suitably adjusting the parameters of tile delayed-feedback ratchets. 展开更多
关键词 delayed-feedback control absolute negative mobility resonant steps phase locking
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Current Reversals of an Underdamped Brownian Particle in an Asymmetric Deformable Potential
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作者 Chun-Chun Cai Jian-Li Liu +1 位作者 Hao Chen Feng-Guo Li 《Communications in Theoretical Physics》 SCIE CAS CSCD 2018年第3期266-270,共5页
Transport of an underdamped Brownian particle in a one-dimensional asymmetric deformable potential is investigated in the presence of both an ac force and a static force,respectively.From numerical simulations,we obta... Transport of an underdamped Brownian particle in a one-dimensional asymmetric deformable potential is investigated in the presence of both an ac force and a static force,respectively.From numerical simulations,we obtain the current average velocity.The current reversals and the absolute negative mobility are presented.The increasing of the deformation of the potential can cause the absolute negative mobility to be suppressed and even disappear.When the static force is small,the increase of the potential deformation suppresses the absolute negative mobility.When the force is large,the absolute negative mobility disappears.In particular,when the potential deformation is equal to0.015,the two current reversals present with the increasing of the force.Remarkably,when the potential deformation is small,there are three current reversals with the increasing of the friction coefficient and the average velocity presents a oscillation behavior. 展开更多
关键词 particle transport asymmetric deformable potential absolute negative mobility current reversals
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