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Group scheduling with general position-dependent effect
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作者 虞先玉 张玉林 张玉环 《Journal of Southeast University(English Edition)》 EI CAS 2012年第3期354-359,共6页
In order to investigate more realistic group scheduling problems with position-dependent effects,the model of general position-dependent group scheduling is proposed,where the actual group setup times and actual proce... In order to investigate more realistic group scheduling problems with position-dependent effects,the model of general position-dependent group scheduling is proposed,where the actual group setup times and actual processing times are described by general functions of the normal group setup time and position in the sequence.These general functions are not assumed to have specific function structures,and are not restricted to be monotone.By mathematical analysis and proof,each considered problem is decomposed into a group scheduling process and a job scheduling process,and each scheduling process is transferred into the classic assignment problem or the classic single-machine sequence problem,and then the computational complexity to solve the considered problem is analyzed.Analysis results show that,even with general position-dependent job processing times,both the single machine makespan minimization group scheduling problems and the parallel-machine total load minimization group scheduling problems remain polynomially solvable. 展开更多
关键词 group scheduling position-dependent MAKESPAN total load
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The fractional features of a harmonic oscillator with position-dependent mass 被引量:3
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作者 Dumitru Baleanu Amin Jajarmi +1 位作者 Samaneh Sadat Sajjadi H Asad 《Communications in Theoretical Physics》 SCIE CAS CSCD 2020年第5期13-20,共8页
In this study,a harmonic oscillator with position-dependent mass is investigated.Firstly,as an introduction,we give a full description of the system by constructing its classical Lagrangian;thereupon,we derive the rel... In this study,a harmonic oscillator with position-dependent mass is investigated.Firstly,as an introduction,we give a full description of the system by constructing its classical Lagrangian;thereupon,we derive the related classical equations of motion such as the classical Euler–Lagrange equations.Secondly,we fractionalize the classical Lagrangian of the system,and then we obtain the corresponding fractional Euler–Lagrange equations(FELEs).As a final step,we give the numerical simulations corresponding to the FELEs within different fractional operators.Numerical results based on the Caputo and the Atangana-Baleanu-Caputo(ABC)fractional derivatives are given to verify the theoretical analysis. 展开更多
关键词 position-dependent mass harmonic oscillator Euler–Lagrange equations fractional derivative
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Coherent States of Nonlinear Oscillators with Position-Dependent Mass:Temporal Stability and Fractional Revivals 被引量:1
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作者 Naila Amir Shahid Iqbal 《Communications in Theoretical Physics》 SCIE CAS CSCD 2017年第8期181-190,共10页
We develop generalized coherent states for a class of nonlinear oscillators with position-dependent effective mass in the context of the Gazeau–Klauder formalism and discuss some of their properties. In order to inve... We develop generalized coherent states for a class of nonlinear oscillators with position-dependent effective mass in the context of the Gazeau–Klauder formalism and discuss some of their properties. In order to investigate the temporal evolution we first explore the statistical properties by means of weighting distribution and the Mandel parameter. It is found that the temporal evolution of the coherent states may exhibit the phenomena of quantum revivals and fractional revivals for a particular choice of position-dependent mass oscillator. 展开更多
关键词 position-dependent effective mass nonlinear oscillators Gazeau-Klauder coherent states Mandelparameter sub-Poissonian statistics temporal stability quantum revivals fractional revivals
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Non-hypergeometric Type of Polynomials and Solutions of Schrodinger Equation with Position-Dependent Mass 被引量:1
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作者 鞠国兴 《Communications in Theoretical Physics》 SCIE CAS CSCD 2011年第8期235-240,共6页
Using the coordinate transformation method, we study the polynomial solutions of the Schr6dinger equation with position-dependent mass (PDM). The explicit expressions for the potentials, energy eigenvalues, and eige... Using the coordinate transformation method, we study the polynomial solutions of the Schr6dinger equation with position-dependent mass (PDM). The explicit expressions for the potentials, energy eigenvalues, and eigenfunctions of the systems are given. The issues related to normalization of the wavefunetions and Hermiticity of the Hamiltonian are also analyzed. 展开更多
关键词 SchrSdinger equation position-dependent mass EIGENFUNCTION EIGENVALUE coordinate transfor-mation method polynomials solution
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Barut–Girardello Coherent States for Nonlinear Oscillator with Position-Dependent Mass 被引量:1
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作者 Naila Amir Shahid Iqbal 《Communications in Theoretical Physics》 SCIE CAS CSCD 2016年第7期41-48,共8页
Using ladder operators for the non-linear oscillator with position-dependent effective mass, realization of the dynamic group SU(1,1) is presented. Keeping in view the algebraic structure of the non-linear oscillator,... Using ladder operators for the non-linear oscillator with position-dependent effective mass, realization of the dynamic group SU(1,1) is presented. Keeping in view the algebraic structure of the non-linear oscillator, coherent states are constructed using Barut–Girardello formalism and their basic properties are discussed. Furthermore, the statistical properties of these states are investigated by means of Mandel parameter and second order correlation function. Moreover,it is shown that in the harmonic limit, all the results obtained for the non-linear oscillator with spatially varying mass reduce to corresponding results of the linear oscillator with constant mass. 展开更多
关键词 position-dependent mass nonlinear oscillator Schdinger factorization Ladder operators su(1 1) algebra Barut–Girardello coherent states sub-poissonian statistics
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Generation of Exactly Solvable Potentials of Position-Dependent Mass Schrödinger Equation from Hulthen Potential 被引量:1
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作者 Hangshadhar Rajbongshi Ngangkham Nimai Singh 《Journal of Modern Physics》 2013年第11期1540-1545,共6页
Exactly Solvable Potentials (ESPs) of Position-Dependent Mass (PDM) Schrodinger equation are generated from Hulthen Potential (parent system) by using Extended Transformation (ET) method. The method includes a Co-ordi... Exactly Solvable Potentials (ESPs) of Position-Dependent Mass (PDM) Schrodinger equation are generated from Hulthen Potential (parent system) by using Extended Transformation (ET) method. The method includes a Co-ordinate Transformation (CT) followed by Functional Transformation (FT) of wave function. Mass function of parent system gets transformed to that of generated system. Two new ESPs are generated. The explicit expressions of mass functions, energy eigenvalues and corresponding wave functions for newly generated potentials (systems) are derived. System specific regrouping method is also discussed. 展开更多
关键词 position-dependent Mass Hulthen POTENTIAL Co-Ordinate TRANSFORMATION Extended TRANSFORMATION EXACT ANALYTIC Solution
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Exact Solutions of Schrdinger Equation for the Position-Dependent Effective Mass Harmonic Oscillator
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作者 Naila Amir Shahid Iqbal 《Communications in Theoretical Physics》 SCIE CAS CSCD 2014年第12期790-794,共5页
A one-dimensional harmonic oscillator with position-dependent effective mass is studied. We quantize the oscillator to obtain a quantum Hamiltonian, which is manifestly Hermitian in configuration space, and the exact ... A one-dimensional harmonic oscillator with position-dependent effective mass is studied. We quantize the oscillator to obtain a quantum Hamiltonian, which is manifestly Hermitian in configuration space, and the exact solutions to the corresponding Schr¨odinger equation are obtained analytically in terms of modified Hermite polynomials.It is shown that the obtained solutions reduce to those of simple harmonic oscillator as the position dependence of the mass vanishes. 展开更多
关键词 nonlinear harmonic oscillator position-dependent effective mass system Schr¨odinger equation modified HERMITE POLYNOMIALS
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Vibrational resonance in a multistable system with position-dependent mass
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作者 T O Roy-Layinde K A Omoteso +4 位作者 O T Kolebaje F O Ogunmefun R A Fasasi J A Laoye U E Vincent 《Communications in Theoretical Physics》 SCIE CAS CSCD 2023年第11期115-134,共20页
The occurrence of vibrational resonance(VR)in a dual-frequency-driven multistable system with a spatially varying mass modelling particle with position-dependent mass(PDM)and evolving in a one-dimensional symmetric pe... The occurrence of vibrational resonance(VR)in a dual-frequency-driven multistable system with a spatially varying mass modelling particle with position-dependent mass(PDM)and evolving in a one-dimensional symmetric periodic potential has been investigated and reported in this paper.We numerically compute and analyze the response amplitude,the effects of the PDM parameters(m0,a)on the potential structure,the occurrence of VR and the bifurcation of the equilibrium points.It is shown that the PDM parameters,besides controlling VR,can induce unconventional resonance patterns through the variation of the potential well depth.The resonant states can be influenced through the cooperation of the PDM parameters and the external forcing leading the system from multiresonance state into single and double resonance states.The contributions of the fixed rest mass m0 on the VR and the PDM-induced resonance are determined by threshold conditions imposed by the magnitude of the mass nonlinear strength a. 展开更多
关键词 vibrations RESONANCE position-dependent mass multistable oscillator dualfrequency force nonlinear systems
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Coordinate Transformation and Exact Solutions of Schrodinger Equation with Position-Dependent Effective Mass
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作者 JU Guo-Xing CAI Chang-Ying +1 位作者 XIANG Yang REN Zhong-Zhou 《Communications in Theoretical Physics》 SCIE CAS CSCD 2007年第6期1001-1009,共9页
Using the coordinate transformation method, we solve the one-dimensional Schrodinger equation with position-dependent mass. The explicit expressions for the potentials, energy eigenvalues, and eigenfunctions of the sy... Using the coordinate transformation method, we solve the one-dimensional Schrodinger equation with position-dependent mass. The explicit expressions for the potentials, energy eigenvalues, and eigenfunctions of the systems are given. The eigenfunctions can be expressed in terms of the Jacobi, Hermite, and generalized Laguerre polynomials. All potentials for these solvable systems have an extra term Vm, which is produced from the dependence of mass on the position, compared with those for the systems of constant mass. The properties of Vm for several mass functions are discussed. 展开更多
关键词 coordinate transformation Schrodinger equation position-dependent mass EIGENFUNCTION special functions
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Quantum carpets:efficiently probing fractional revivals in position-dependent mass systems
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作者 Tooba Bibi Sunia Javed Shahid Iqbal 《Communications in Theoretical Physics》 SCIE CAS CSCD 2023年第1期46-54,共9页
Position-dependent-mass systems are of great importance in many physical situations,such as the transport of charge carriers in semiconductors with non-uniform composition and in the theory of many-body interactions i... Position-dependent-mass systems are of great importance in many physical situations,such as the transport of charge carriers in semiconductors with non-uniform composition and in the theory of many-body interactions in condensed matter.Here we investigate,numerically and analytically,the phenomenon of fractional revivals in such systems,which is a generic characteristic manifested by the wave-packet evolution in bounded Hamiltonian systems.Identifying the fractional revivals using specific probes is an important task in the theory of quantum measurement and sensing.We numerically simulate the temporal evolution of probability density and information entropy density,which manifest self-similarly recurring interference patterns,namely,quantum carpets.Our numerical results show that the quantum carpets not only serve as an effective probe for recognizing the fractional revivals of various order but they efficiently describe the effect of spatially-varying mass on the structure of fractional revivals,which is manifested as a symmetry breaking in their designs. 展开更多
关键词 wave-packet dynamics quantum carpets information carpets quantum revivals fractional revivals position-dependent mass schroedinger equation
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Localization of s-Wave and Quantum Effective Potential of a Quasi-free Particle with Position-Dependent Mass
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作者 JU Guo-Xing XIANG Yang REN Zhong-Zhou 《Communications in Theoretical Physics》 SCIE CAS CSCD 2006年第5X期819-825,共7页
The properties of the 8-wave for a quasl-free partide with position-dependent mass (PDM) have been discussed in details. Differed from the system with constant mass in which the localization of the s-wave for the fr... The properties of the 8-wave for a quasl-free partide with position-dependent mass (PDM) have been discussed in details. Differed from the system with constant mass in which the localization of the s-wave for the free quantum particle around the origin only occurs in two dimensions, the quasi-free particle with PDM can experience attractive forces in D dimensions except D = 1 when its mass function satisfies some conditions. The effective mass of a particle varying with its position can induce effective interaction, which may be attractive in some cases. The analytical expressions of the eigenfunctions and the corresponding probability densities for the 8-waves of the two- and three-dimensional systems with a special PDM are given, and the existences of localization around the origin for these systems are shown. 展开更多
关键词 position-dependent mass S-WAVE Schrodinger equation dimensionality of the space LOCALIZATION EIGENFUNCTION probability density
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On superintegrable systems with a position-dependent mass in polar-like coordinates
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作者 Hai Zhang 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第10期96-100,共5页
For a superintegrable system defined in plane polar-like coordinates introduced by Szumiński et al. and studied by Fordy, we show that the system with a position-dependent mass is separable in three distinct coordina... For a superintegrable system defined in plane polar-like coordinates introduced by Szumiński et al. and studied by Fordy, we show that the system with a position-dependent mass is separable in three distinct coordinate systems. The corresponding separation equations and additional integrals of motion are derived explicitly. The closure algebra of integrals is deduced. We also make a generalization of this system by employing the classical Jacobi method. Lastly a sufficient condition which ensures flatness of the underlying space is derived via explicit calculation. 展开更多
关键词 superintegrable system separation of variables position-dependent mass polar-likecoordinates Jacobi method
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Bound states of the Dirac equation with position-dependent mass for the Eckart potential
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作者 Bahar M. K. Yasuk F. 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第1期62-67,共6页
Studying with the asymptotic iteration method, we present approximate solutions of the Dirac equation for the Eckart potential in the case of position-dependent mass. The centrifugal term is approximated by an exponen... Studying with the asymptotic iteration method, we present approximate solutions of the Dirac equation for the Eckart potential in the case of position-dependent mass. The centrifugal term is approximated by an exponential form, and the relativistic energy spectrum and the normalized eigenfunctions are obtained explicitly. 展开更多
关键词 Dirac equation position-dependent mass Eckart potential asymptotic iteration method
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Shannon information entropies for position-dependent mass Schrdinger problem with a hyperbolic well
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作者 Sun Guo-Hua Duan Popov +1 位作者 Oscar Camacho-Nieto Dong Shi-Hai 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第10期45-52,共8页
The Shannon information entropy for the Schrodinger equation with a nonuniform solitonic mass is evaluated for a hyperbolic-type potential. The number of nodes of the wave functions in the transformed space z are brok... The Shannon information entropy for the Schrodinger equation with a nonuniform solitonic mass is evaluated for a hyperbolic-type potential. The number of nodes of the wave functions in the transformed space z are broken when recovered to original space x. The position Sx and momentum S p information entropies for six low-lying states are calculated. We notice that the Sx decreases with the increasing mass barrier width a and becomes negative beyond a particular width a,while the Sp first increases with a and then decreases with it. The negative Sx exists for the probability densities that are highly localized. We find that the probability density ρ(x) for n = 1, 3, 5 are greater than 1 at position x = 0. Some interesting features of the information entropy densities ρs(x) and ρs(p) are demonstrated. The Bialynicki-Birula-Mycielski(BBM)inequality is also tested for these states and found to hold. 展开更多
关键词 position-dependent mass Shannon information entropy hyperbolic potential Fourier transform
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Generalized Harmonic Oscillator and the Schrdinger Equation with Position-Dependent Mass
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作者 JU Guo-Xing CAI Chang-Ying REN Zhong-Zhou 《Communications in Theoretical Physics》 SCIE CAS CSCD 2009年第5期797-802,共6页
We study the generalized harmonic oscillator that has both the position-dependent mass and the potential depending on the form of mass function in a more general framework. The explicit expressions of the eigenvalue a... We study the generalized harmonic oscillator that has both the position-dependent mass and the potential depending on the form of mass function in a more general framework. The explicit expressions of the eigenvalue and eigenfunction for such a system are given, they have the same forms as those for the usual harmonic oscillator with constant mass. The coherent state and its properties corresponding effective potentials for several mass functions, for the system with PDM are also discussed. We give the the systems with such potentials are isospectral to the usual harmonic oscillator. 展开更多
关键词 generalized harmonic oscillator Schr6dinger equation position-dependent mass coherent state
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Variational Principle for a Schrodinger Equation with Non-Hermitian Hamiltonian and Position-Dependent Mass
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作者 A.R.Plastino C.Vignat A.Plastino 《Communications in Theoretical Physics》 SCIE CAS CSCD 2015年第3期275-278,共4页
A classical field theory for a Schrodinger equation with a non-Hermitian Hamiltonian describing a particle with position-dependent mass has been recently advanced by Nobre and Rego-Monteiro(NR)[Phys.Rev.A 88(2013)0321... A classical field theory for a Schrodinger equation with a non-Hermitian Hamiltonian describing a particle with position-dependent mass has been recently advanced by Nobre and Rego-Monteiro(NR)[Phys.Rev.A 88(2013)032105].This field theory is based on a variational principle involving the wavefunction Ψ(x,t) and an auxiliary fieldΦ{x,t).It is here shown that the relation between the dynamics of the auxiliary field Φ(x,t) and that of the original wavefunction Ψ(x,t) is deeper than suggested by the NR approach.Indeed,we formulate a variational principle for the aforementioned Schrodinger equation which is based solely on the wavefunction Ψ(x,t).A continuity equation for an appropriately defined probability density,and the concomitant preservation of the norm,follows from this variational principle via Noether's theorem.Moreover,the norm-conservation law obtained by NR is reinterpreted as tie preservation of the inner product between pairs of solutions of the variable mass Schrodinger equation. 展开更多
关键词 Schrodinger equation non-hermitian Hamiltonian position-dependent mass classical field theory
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Mapping Between Charge-Dyon and Position-Dependent Mass Systems
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作者 Anderson L.de Jesus Alexandre G.M.Schmidt 《Communications in Theoretical Physics》 SCIE CAS CSCD 2019年第10期1261-1266,共6页
The primary purpose of this work is to reproduce the scenario composed of a charge-dyon system utilizing position-dependent effective mass(PDM) background in the non-relativistic and in the relativistic regimes. In th... The primary purpose of this work is to reproduce the scenario composed of a charge-dyon system utilizing position-dependent effective mass(PDM) background in the non-relativistic and in the relativistic regimes. In the nonrelativistic case we substitute the exact charge-dyon eigenfunction into PDM Schr?dinger equation, in the Zhu-Kroemer parametrization, and then solve it for the mass distribution considering M = M(r). Analogously, in the relativistic case we study the Klein-Gordon equation for a position-dependent mass, and in this case, we are able to analytically solve the equation for M = M(r, θ). 展开更多
关键词 position-dependent mass Schrodinger equation Klein-Gordon equation DYON
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Semiclassical Method to Schroedinger Equation with Position-Dependent Effective Mass
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作者 CHEN Gang XUAN Pei-Cai CHEN Zi-Dong 《Communications in Theoretical Physics》 SCIE CAS CSCD 2006年第1X期39-42,共4页
In this paper, two novel semiclassical methods including the standard and supersymmetric WKB quantization conditions are suggested to discuss the Schroedinger equation with position-dependent effective mass. From a pr... In this paper, two novel semiclassical methods including the standard and supersymmetric WKB quantization conditions are suggested to discuss the Schroedinger equation with position-dependent effective mass. From a proper coordinate transformation, the formalism of the Schroedinger equation with position-dependent effective mass is mapped into isospectral one with constant mass and therefore for a given mass distribution and physical potential function the bound state energy spectrum can be determined easily by above method associated with a simple integral formula. It is shown that our method can give the analytical results for some exactly-solvable quantum systems. 展开更多
关键词 Schroedinger equation position-dependent effective mass standard WKB quantization supersymmetric WKB quantization
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Asymmetric Evolution of Two Two-Level Atoms Induced by Position-Dependent Excitation Phase
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作者 周春晓 张锐 苏雪梅 《Communications in Theoretical Physics》 SCIE CAS CSCD 2015年第6期743-748,共6页
We report a phenomenon of asymmetric evolution of two two-level atoms which results from pump laser phase based on the model of[Phys.Rev.Lett.101(2008) 153601].Other than investigating the dynamical behavior of whole ... We report a phenomenon of asymmetric evolution of two two-level atoms which results from pump laser phase based on the model of[Phys.Rev.Lett.101(2008) 153601].Other than investigating the dynamical behavior of whole system,in this paper we investigate the effects of the pump laser phase on dynamic behavior of each atom.We find that two atoms show asymmetry both in time evolution of(population) excitation probability and quantum correlation with environment due to the quantum interference induced by pump laser phase as well as the dipole-dipole interaction.These phenomena are deeply related to the dynamical behavior of the whole system,therefore we can understand the dynamical behavior of whole system caused by pump laser phase from this point of view. 展开更多
关键词 asymmetry position-dependent excitation phase timed Dicke basis
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One-dimensional quantum walks with a position-dependent coin
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作者 Rashid Ahmad Uzma Sajjad Muhammad Sajid 《Communications in Theoretical Physics》 SCIE CAS CSCD 2020年第6期18-28,共11页
We investigate the evolution of a discrete-time one-dimensional quantum walk driven by a position-dependent coin.The rotation angle,which depends upon the position of a quantum particle,parameterizes the coin operator... We investigate the evolution of a discrete-time one-dimensional quantum walk driven by a position-dependent coin.The rotation angle,which depends upon the position of a quantum particle,parameterizes the coin operator.For different values of the rotation angle,we observe that such a coin leads to a variety of probability distributions,e.g.localized,periodic,classicallike,semi-classical-like,and quantum-like.Further,we study the Shannon entropy associated with position and the coin space of a quantum particle,and compare them with the case of the position-independent coin.Our results show that the entropy is smaller for most values of the rotation angle as compared to the case of the position-independent coin.We also study the effect of entanglement on the behavior of probability distribution and Shannon entropy by considering a quantum walk with two identical position-dependent entangled coins.We observe that in general,a wave function becomes more localized as compared to the case of the positionindependent coin and hence the corresponding Shannon entropy is lower.Our results show that a position-dependent coin can be used as a controlling tool of quantum walks. 展开更多
关键词 quantum walk position-dependent coin Shannon entropy
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