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81.
Collins Okon Edet Francisco Cleiton E. Lima Carlos Alberto S. Almeida Norshamsuri Ali Muhammad Asjad 《Entropy (Basel, Switzerland)》2022,24(8)
We investigate quantum information by a theoretical measurement approach of an Aharanov–Bohm (AB) ring with Yukawa interaction in curved space with disclination. We obtained the so-called Shannon entropy through the eigenfunctions of the system. The quantum states considered come from Schrödinger theory with the AB field in the background of curved space. With this entropy, we can explore the quantum information at the position space and reciprocal space. Furthermore, we discussed how the magnetic field, the AB flux, and the topological defect influence the quantum states and the information entropy. 相似文献
82.
Francisco Vega Reyes lvaro Rodríguez-Rivas Juan F. Gonzlez-Saavedra Miguel A. Lpez-Castao 《Entropy (Basel, Switzerland)》2022,24(11)
We study an air-fluidized granular monolayer composed of plastic spheres which roll on a metallic grid. The air current is adjusted so that the spheres never lose contact with the grid and so that the dynamics may be regarded as pseudo two dimensional (or two dimensional, if the effects of the sphere rolling are not taken into account). We find two surprising continuous transitions, both of them displaying two coexisting phases. Moreover, in all the cases, we found the coexisting phases display a strong energy non-equipartition. In the first transition, at a weak fluidization, a glass phase coexists with a disordered fluid-like phase. In the second transition, a hexagonal crystal coexists with the fluid phase. We analyze, for these two-phase systems, the specific diffusive properties of each phase, as well as the velocity correlations. Surprisingly, we find a glass phase at a very low packing fraction and for a wide range of granular temperatures. Both phases are also characterized by strong anticorrelated velocities upon a collision. Thus, the dynamics observed for this quasi two-dimensional system unveil phase transitions with peculiar properties, very different from the predicted behavior in well-know theories for their equilibrium counterparts. 相似文献
83.
84.
85.
Let and be two distinct parallel planes in . Let and denote two points such that the segment meets and orthogonally. Let be a straight line containing , and denote as the set of straight lines in containing . Then there exists an analytic family of proper pairwise non congruent minimal immersions satisfying:
1. is homeomorphic to , where
2. , where .
3. is contained in the slab determined by and .
4. If and are the two connected components of , then is injective, .
5. The parameter is an analytic determination of the angle that the orthogonal projection of on makes with and is invariant under the reflection around a straight line not contained in the surface.
6. If is a proper minimal immersion satisfying 1, 2, 3 and4, then, up to a rigid motion, .
Received December 28, 1997 / Revised November 20, 1999 / Published online October 11, 2000 相似文献
86.
87.
This paper proves the existence of Orlicz function spaces Lφ (0, 1) containing no complemented subspaces isomorphic tol
p
for anyp ≠ 2. Some properties of minimal Orlicz function spaces Lφ (0, 1) are also given.
Supported in part by CAICYT grant 0338-84. 相似文献
88.
B. Boffey Francisco Ramón Fernández García Gilbert Laporte Juan A. Mesa Blas Pelegrín Pelegrín 《TOP》1995,3(2):167-220
Summary Many network routing problems, particularly where the transportation of hazardous materials is involved, are multiobjective
in nature; that is, it is desired to optimise not only physical path length but other features as well. Several such problems
are defined here and a general framework for multiobjective routing problems is proposed. The notion of “efficient solution”
is defined and it is demonstrated, by means of an example, that a problem may have very many solutions which are efficient.
Next, potentially useful solution methods for multiobjective routing problems are discussed with emphasis being placed on
the use of shortest/k-shortest path techniques. Finally, some directions for possible further research are indicated.
Invited by B. Pelegrin 相似文献
89.
Photonic crystal technology allows the creation of optical waveguides with low sharp-bending losses as well as ultra-low group velocity. This last property is particularly interesting to develop highly-compact optical devices based on the controlled modification of the optical phase of the signals traveling through the waveguides. Among these devices, the Mach–Zehnder interferometer acquires fundamental importance because it can be used as a building block of more complex optical devices and functionalities such as optical filters, wavelength demultiplexers, channels interleavers, intensity modulators, switches and optical gates. In this paper, the performance of a Mach–Zehnder interferometer consisting of two coupled-cavity waveguides with different lengths created in a two-dimensional photonic crystal is theoretically analyzed. We also provide simulation results using a finite-difference time-domain code that confirm the theoretical analysis. The main limitations in the performance of the structure are addressed and discussed. 相似文献
90.