We propose an ultra-compact subwavelength cavity resonator that is composed of a bilayer of metamaterials, one with only negative dielectric constant and the other one with only negative permeability. It is shown that...We propose an ultra-compact subwavelength cavity resonator that is composed of a bilayer of metamaterials, one with only negative dielectric constant and the other one with only negative permeability. It is shown that the total thickness of the resonator can be much smaller than the resonant wavelength. In addition, this resonator is always single-mode.展开更多
We systematically investigate the motion of slowly moving matter wave gap solitons in a nonlinear potential, produced by the weak random spatial variation of the atomic scattering length. With the weak randomness, we ...We systematically investigate the motion of slowly moving matter wave gap solitons in a nonlinear potential, produced by the weak random spatial variation of the atomic scattering length. With the weak randomness, we construct an effective-particle theory to study the motion of gap solitons. Based on the effective-particle theory, the effect of the randomness on gap solitons is obtained, and the motion of gap solitons is finally solved. Moreover, the analytic results for the general behaviours of gap soliton motion, such as the ensemble-average speed and the reflection probability depending on the weak randomness are obtained. We find that with the increase of the random strength the ensemble-average speed of gap solitons decreases slowly where the reduction is proportional to the variance of the weak randomness, and the reflection probability becomes larger. The theoretical results are in good agreement with the numerical simulations based on the Cross-Pitaevskii equation.展开更多
Lattice dynamics of ^(36)Ar are investigated by Keating model.Owing to the short-range character of the interactions in rare-gas solids,only the nearest neighbour interactions were taken into account.The calculated ph...Lattice dynamics of ^(36)Ar are investigated by Keating model.Owing to the short-range character of the interactions in rare-gas solids,only the nearest neighbour interactions were taken into account.The calculated phonon frequencies and elastic constants are in good agreement with the experimental values.The maximum error for phonon frenquencies is 3.3% and for the elastic constants is 7%.展开更多
The monolayer adsorbed Mo(001)surface is studied by the slab dynamical calculation by using the nearest and next nearest neighbour interactions.The phase diagram is obtained for light,heavy atom adsorbed and clean Mo(...The monolayer adsorbed Mo(001)surface is studied by the slab dynamical calculation by using the nearest and next nearest neighbour interactions.The phase diagram is obtained for light,heavy atom adsorbed and clean Mo(001)surface.The surface reconstruction induced by the interactions between adsorbed atoms is dicussed.展开更多
基金Supported by the National Key Basic Research Special Fund of China, the National Natural Science Foundation of China, and the Shanghai Science and Technology Commission.
文摘We propose an ultra-compact subwavelength cavity resonator that is composed of a bilayer of metamaterials, one with only negative dielectric constant and the other one with only negative permeability. It is shown that the total thickness of the resonator can be much smaller than the resonant wavelength. In addition, this resonator is always single-mode.
基金Project supported by the National Basic Research Program of China (Grant No 2006CB921701-6)Pujiang Talent Project (Grant No PJ2005(00593))the Hundred Tarent Project of the Chinese Academy of Sciences, China
文摘We systematically investigate the motion of slowly moving matter wave gap solitons in a nonlinear potential, produced by the weak random spatial variation of the atomic scattering length. With the weak randomness, we construct an effective-particle theory to study the motion of gap solitons. Based on the effective-particle theory, the effect of the randomness on gap solitons is obtained, and the motion of gap solitons is finally solved. Moreover, the analytic results for the general behaviours of gap soliton motion, such as the ensemble-average speed and the reflection probability depending on the weak randomness are obtained. We find that with the increase of the random strength the ensemble-average speed of gap solitons decreases slowly where the reduction is proportional to the variance of the weak randomness, and the reflection probability becomes larger. The theoretical results are in good agreement with the numerical simulations based on the Cross-Pitaevskii equation.
文摘Lattice dynamics of ^(36)Ar are investigated by Keating model.Owing to the short-range character of the interactions in rare-gas solids,only the nearest neighbour interactions were taken into account.The calculated phonon frequencies and elastic constants are in good agreement with the experimental values.The maximum error for phonon frenquencies is 3.3% and for the elastic constants is 7%.
文摘The monolayer adsorbed Mo(001)surface is studied by the slab dynamical calculation by using the nearest and next nearest neighbour interactions.The phase diagram is obtained for light,heavy atom adsorbed and clean Mo(001)surface.The surface reconstruction induced by the interactions between adsorbed atoms is dicussed.