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1.
Soliton eigenvalue control in optical lattices 总被引:1,自引:0,他引:1
Kartashov YV Crasovan LC Zelenina AS Vysloukh VA Sanpera A Lewenstein M Torner L 《Physical review letters》2004,93(14):143902
We address the dynamics of higher-order solitons in optical lattices, and predict their self-splitting into the set of their single-soliton constituents. The splitting is induced by the potential introduced by the lattice, together with the imprinting of a phase tilt onto the initial multisoliton states. The phenomenon allows the controllable generation of several coherent solitons linked via their Zakharov-Shabat eigenvalues. Application of the scheme to the generation of correlated matter waves in Bose-Einstein condensates is discussed. 相似文献
2.
We address the impact of nonlocality in the physical features exhibited by solitons supported by Kerr-type nonlinear media with an imprinted optical lattice. We discover that the nonlocality of the nonlinear response can profoundly affect the soliton mobility, hence all the related phenomena. Such behavior manifests itself in significant reductions of the Peierls-Nabarro potential with an increase in the degree of nonlocality, a result that opens the rare possibility in nature of almost radiationless propagation of highly localized solitons across the lattice. 相似文献
3.
We predict new phenomena, such as soliton steering and soliton fission, in optical lattices that fade away exponentially along the propagation direction. Such lattices, featuring tunable decay rates, arise in photorefractive crystals in the wavelength range 360-400 nm. We show that the predicted phenomena offer different opportunities for soliton control. 相似文献
4.
We report on the phenomenon of controllable soliton dragging by dynamic optical lattices induced by three imbalanced interfering plane waves. Because of such an imbalance, the transverse momentum of the lattice does not vanish, and thus the dynamic lattice can cause soliton dragging. The dragging rate is shown to depend on the amplitude and on the angle of incidence of the third plane wave making the optical lattice. 相似文献
5.
We describe a continuous analog of the quasirectangular flat-top nonlinear modes earlier found for discrete nonlinear models.
We show that these novel nonlinear modes can be understood as multi-soliton complexes with either in-phase or out-of-phase
neighboring solitons trapped by the periodic potential of the lattice. We demonstrate a link between the flat-top states and
the truncated nonlinear Bloch waves, and discuss how these nonlinear localized modes can be monitored experimentally in photonics
and Bose–Einstein condensates.
PACS 42.65.Tg; 42.65.Jx; 03.75.Lm 相似文献
6.
We address the dynamics of solitons in the optical lattices with periodic modulation of the nonlinearity coefficient. Based on the quasi-particle approach, the properties of fundamental soliton localized in optical lattices are theoretically analyzed and shown its potential application for controllable soliton switching. Moreover, the phenomena of multi-soliton splitting and the single-soliton constituent trapping in the optical lattices are illustrated and discussed. 相似文献
7.
We study superfluid and Mott insulator phases of cold spin-1 Bose atoms with antiferromagnetic interactions in an optical lattice, including a usual polar condensate phase, a condensate of singlet pairs, a crystal spin nematic phase, and a spin singlet crystal phase. We suggest a possibility of exotic fractionalized phases of spinor Bose-Einstein condensates and discuss them in the language of Z2 lattice gauge theory. 相似文献
8.
Soliton modes, stability, and drift in optical lattices with spatially modulated nonlinearity 总被引:1,自引:0,他引:1
We put forward new properties of lattice solitons in materials and geometries where both the linear refractive index and the nonlinearity are spatially modulated. We show that the interplay between linear and out-of-phase nonlinear refractive index modulations results in new soliton properties, including modifications of the soliton stability and transverse mobility, as well as shape transformations that may be controlled, e.g., by varying the light intensity. 相似文献
9.
We study experimentally the interaction of a soliton with a nonlinear lattice. We observe the formation of a novel type of composite soliton created by strong coupling of mutually incoherent periodic and localized beam components. By imposing an initial transverse momentum on the soliton stripe, we observe the effect of lattice compression and deformation. 相似文献
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We address soliton spiraling in optical lattices induced by multiple coherent Bessel beams and show that the dynamic nature of such lattices makes it possible for them to drag different soliton structures, setting them into rotation. We can control the rotation rate by varying the topological charges of lattice-inducing Bessel beams. 相似文献
12.
Huang Z 《Physical review D: Particles and fields》1992,46(11):R4818-R4821
13.
Mei symmetry and conservation laws of discrete nonholonomic dynamical systems with regular and irregular lattices 下载免费PDF全文
In this paper,Noether symmetry and Mei symmetry of discrete nonholonomic dynamical systems with regular and the irregular lattices are investigated.Firstly,the equations of motion of discrete nonholonomic systems are introduced for regular and irregular lattices.Secondly,for cases of the two lattices,based on the invariance of the Hamiltomian functional under the infinitesimal transformation of time and generalized coordinates,we present the quasi-extremal equation,the discrete analogues of Noether identity,Noether theorems,and the Noether conservation laws of the systems.Thirdly,in cases of the two lattices,we study the Mei symmetry in which we give the discrete analogues of the criterion,the theorem,and the conservative laws of Mei symmetry for the systems.Finally,an example is discussed for the application of the results. 相似文献
14.
We suggest a novel approach to soliton control and routing based on Bloch-wave filtering in periodic photonic structures. Taking a binary waveguide array as an example, we demonstrate that spatial solitons that belong to different spectral gaps can be selectively reflected from or transmitted through an engineered defect, which acts as a low- or high-pass filter for Bloch waves. 相似文献
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16.
Mizuki Ono 《Communications in Mathematical Physics》1989,126(1):25-48
We consider then-dimensional Euclidean lattices withZ
m
symmetries. It is shown that such lattices can be considered as ideals of some cyclotomic fields. Therefore we can translate problems about the above lattices into those about number theory. For alln (n22), we have obtained the classification of such lattices. 相似文献
17.
H. Gimperlein S. Wessel J. Schmiedmayer L. Santos 《Applied physics. B, Lasers and optics》2006,82(2):217-224
We consider the physics of lattice bosons in the presence of either disordered on-site chemical potential or disordered on-site
interparticle interactions. By means of analytical results using strong-coupling expansion, and numerical results based on
quantum Monte Carlo calculations, we show that important qualitative changes in the zero temperature phase diagram are observed
when comparing both cases. Although for both types of disorder superfluid, Mott-insulator and Bose-glass phases may be found,
we show that in the case of random interactions the Mott-insulating regions shrink and eventually vanish for any finite disorder
strength beyond a sufficiently large filling factor. Furthermore, at low values of the chemical potential both the superfluid
and Mott insulator are stable towards the formation of a Bose-glass, leading to a possibly non-trivial tricritical point.
We discuss possible experimental realizations of both types of disorder in the context of ultra cold atomic gases in optical
lattices.
PACS 03.75.Lm; 03.75.Ss; 05.30.Jp; 32.80.Pj 相似文献
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19.
Using mean field theory, we have studied Bose-Fermi mixtures in a one-dimensional optical lattice in the case of an attractive boson-fermion interaction. We consider that the fermions are in the degenerate regime and that the laser intensities are such that quantum coherence across the condensate is ensured. We discuss the effect of the optical lattice on the critical rotational frequency for vortex line creation in the Bose-Einstein condensate, as well as how it affects the stability of the boson-fermion mixture. A reduction of the critical frequency for nucleating a vortex is observed as the strength of the applied laser is increased. The onset of instability of the mixture occurs for a sizably lower number of fermions in the presence of a deep optical lattice. 相似文献
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