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局域性和de Broglie方程 被引量:1
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作者 沈惠川 《自然杂志》 1995年第4期242-243,共2页
非局域性具体表现在三个方面:(1)不承认物质粒子的质量和能量(全部或大部分)局限于一小范围内,即粒子是“不成形”的;(2)允许信号传播速度可以超过光速,因而有时将“超光速”作为非局域性的一种狭义表述;(3)空间分离事件具有相关性,这... 非局域性具体表现在三个方面:(1)不承认物质粒子的质量和能量(全部或大部分)局限于一小范围内,即粒子是“不成形”的;(2)允许信号传播速度可以超过光速,因而有时将“超光速”作为非局域性的一种狭义表述;(3)空间分离事件具有相关性,这种相关性包含了Bohr“整体性”的全部内容.在这三方面中,“相关性”是最主要的特点。 展开更多
关键词 局域性 broglie方程 纯性方程
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De Broglie波的相速与群速
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作者 王文赜 《西北师范大学学报(自然科学版)》 CAS 1995年第4期108-110,共3页
DeBroglie波的相速和群速是两类不同的速率,相速等于单色波传播速率,群速等于粒子运动速率.文中给出了相速与群速的一般关系.
关键词 broglie 相速 群速 关系 电子 相对论
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De Broglie Wave的相速度和群速度
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作者 李勇 吴天兰 《商丘职业技术学院学报》 2011年第5期48-50,共3页
De Broglie Wave是可以按照几率解释的,在几率解释的基础上研究De Broglie Wave的相速度、群速度等速度特性,并建立了它们的关系。
关键词 DE broglie WAVE 波包 相速度 群速度
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de Broglie波的四维张量形式
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作者 刘紫玉 《咸阳师范学院学报》 2020年第2期23-24,共2页
由于de Broglie物质波具有相对论协变性,故de Broglie物质波的波矢可以写为四维形式,在四维形式下,德布罗意波的波矢可以用四维动量来表示。通过引入波矢张量,还得到了de Broglie波的四维张量形式,这种形式下de Broglie波的波矢由物质... 由于de Broglie物质波具有相对论协变性,故de Broglie物质波的波矢可以写为四维形式,在四维形式下,德布罗意波的波矢可以用四维动量来表示。通过引入波矢张量,还得到了de Broglie波的四维张量形式,这种形式下de Broglie波的波矢由物质的能量-动量张量表示。 展开更多
关键词 DE broglie 四维时空 能量-动量张量
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Wave-Particle Duality in Einstein-de Broglie Programs 被引量:1
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作者 Claude Elbaz 《Journal of Modern Physics》 2014年第18期2192-2199,共8页
The standard model of particle physics forms a consistent system for universe description. After following quantum mechanics, it derives particles from relativistic quantum fields. Since it does not include gravitatio... The standard model of particle physics forms a consistent system for universe description. After following quantum mechanics, it derives particles from relativistic quantum fields. Since it does not include gravitation, it describes only one aspect of the universe. In extension of general relativity, Einstein had proposed a symmetrical and complementary approach of physics. In his program, he privileged a relativist field based on representations for physical phenomena, before a precise mathematical description. It allows completing and unifying the universe description, like both eyes for relief vision, and both ears for stereophonic audition. We propose to show it with many simple examples. 展开更多
关键词 Standard Model Quantum Theory Special Relativity DE broglie RELATION Planck-Einstein RELATION GRAVITATION PLANCK Parameters
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SUPER NONLINEAR TOTAL ENERGY OF A PARTICLE AND THE THEORY OF DE BROGLIE WAVE
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作者 杨文熊 杨长俊 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 1999年第5期65-69,共5页
By using Laurent series, the veloci ty (~c) is expanded and then the total energy expression of a particle moving w ith high velocity is obtained. The total energy contains two parts: the rest e ne rgy and the kineti... By using Laurent series, the veloci ty (~c) is expanded and then the total energy expression of a particle moving w ith high velocity is obtained. The total energy contains two parts: the rest e ne rgy and the kinetic energy. Also in this paper the theory of the de Broglie wave from the relation of the energy_momentum is obtained in which the phase velocit y is still less than the velocity of light c . 展开更多
关键词 super nonlinear total energy kinetic e nergy rest energy MOMENTUM de broglie wave
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A Unified Field Theory Based on a Rotating de Broglie Wave Packet
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作者 Louis M. Houston 《Journal of Applied Mathematics and Physics》 2019年第2期343-355,共13页
We derive a unified field theory based on a rotating de Broglie wave packet that combines electromagnetism, quantum mechanics, gravity and the strong force. We assume the already proven electro-weak force. This Planck... We derive a unified field theory based on a rotating de Broglie wave packet that combines electromagnetism, quantum mechanics, gravity and the strong force. We assume the already proven electro-weak force. This Planck units theory requires that t&#8776;r?and m=r. 展开更多
关键词 De broglie WAVELENGTH Electromagnetism Quantum Mechanics Electro-Weak FORCE General RELATIVITY Strong FORCE
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The de Broglie Waves and Joule-Lenz Law Applied in Examining the Electron Transitions in Small Quantum Systems
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作者 Stanislaw Olszewski 《Journal of Modern Physics》 2019年第2期176-194,共19页
A transformation of the electron states—say those enclosed in a potential box—into the de Broglie waves done in the paper, enabled us to calculate the energy change between two quantum levels as a function of the sp... A transformation of the electron states—say those enclosed in a potential box—into the de Broglie waves done in the paper, enabled us to calculate the energy change between two quantum levels as a function of the specific heat and difference of the temperature between the states. In consequence, the energy difference and that of entropy between the levels could be examined in terms of the appropriate classical parameters. In the next step, the time interval necessary for the electron transition between the levels could be associated with the classical electrodynamical parameters like the electric resistance and capacitance connected with the temporary formation of the electric cell in course of the transition. The parameters characterizing the mechanical inertia of the electron were next used as a check of the electrodynamical formulae referring to transition. 展开更多
关键词 The de broglie Waves Specific Heat and Energy AS Well AS Entropy Transfer in SMALL Quantum Systems Time Interval of the Electron Transition Associated with Parameters of the CLASSICAL ELECTRODYNAMICS
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Relativistic Derivations of de Broglie and Planck-Einstein Equations
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作者 Fabrizio Logiurato 《Journal of Modern Physics》 2014年第1期1-7,共7页
Special Relativity sets tight constraints on the form of the possible relations between the four-momentum of a particle and the wave four-vector. In fact, we demonstrate that there is just one way, according to Specia... Special Relativity sets tight constraints on the form of the possible relations between the four-momentum of a particle and the wave four-vector. In fact, we demonstrate that there is just one way, according to Special Relativity, to relate the energy and the momentum of a corpuscle with the characteristics of a plane wave, frequency and wave vector, if the momentum has to flow in the same direction of the wave propagation: the laws must be of direct proportionality like de Broglie and Planck-Einstein equations. 展开更多
关键词 Quantum Theory Special Relativity DE broglie RELATION Planck-Einstein RELATION
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Quantum Mechanics Hypothesis of Solar System Structure: Quantum de Broglie Wavelength, LQG Similitude and Slow Bang Theory (SB)
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作者 Jean Perron 《Journal of High Energy Physics, Gravitation and Cosmology》 CAS 2022年第3期835-852,共18页
This idea of quantifying the energy of bodies orbiting the Sun is not new. We have identified that quantization applies well if we use the true quantum number associated with the true energy state of rotating bodies. ... This idea of quantifying the energy of bodies orbiting the Sun is not new. We have identified that quantization applies well if we use the true quantum number associated with the true energy state of rotating bodies. This quantum number is very high for the main bodies or planets (10<sup>~70 to 76</sup>). However, since quantum energy levels E are very high and ΔE very low we observe that bodies can in practice occupy all orbits. Thus, the current observed stable positions of the bodies are the results of the quantization and the sum of the effects of other perturbative phenomena. To find a quantum state starting with n = 1, we expressed the true integer quantum numbers as a function of that of the planet Mercury and we find an excellent correlation. However, the search for a correlation of prediction of the average orbital radius of bodies using the simple integer number n = 1, 2, 3, 4, 5, 6, 7, … is not excellent for bodies beyond the planet Pluto. Indeed, several trans-Neptunian bodies have similar integer quantum numbers, which poses a problem in the sequence of integer numbers beyond 10. Moreover, it appears that the trans-Neptunian bodies seem to be grouped for many of them according to relatively well-defined bands. The study made it possible to question the de Broglie wavelength of bodies (10<sup>~-58 to -65</sup> m). Indeed, with the hypothesis of Planck quantities that would apply to the scale of the universe, it is difficult to conceive that de Broglie wavelengths are less than the Planck length l<sub>p</sub>. This led to an expression of the modified de Broglie wavelength λ<sub>m</sub> that predicts an asymptotic lower limit value equal to πl<sub>p</sub>. This modified de Broglie wavelength makes it possible to obtain a better correlation for the prediction of the average orbital radius of bodies. Finally, this modified wavelength of de Broglie made it possible to put into perspective the concept of the quantification of space with the idea of the minimum wavelength associated with photon’s energies during the generation of the energy of the universe according to a model already presented in this review. This modified de Broglie wavelength also makes it possible to imagine that the quantification of the volume of space involves the geometry of the sphere and the cube. 展开更多
关键词 Solar System de broglie Wavelength Quantum Mechanics Loop Quantum Gravity LQG
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De Broglie’s Velocity of Transition between Quantum Levels and the Quantum of the Magnetic Spin Moment Obtained from the Uncertainty Principle for Energy and Time
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作者 Stanislaw Olszewski 《Journal of Modern Physics》 2014年第18期2022-2029,共8页
The De Broglie’s approach to the quantum theory, when combined with the conservation rule of momentum, allows one to calculate the velocity of the electron transition from a quantum state n to its neighbouring state ... The De Broglie’s approach to the quantum theory, when combined with the conservation rule of momentum, allows one to calculate the velocity of the electron transition from a quantum state n to its neighbouring state as a function of n. The paper shows, for the case of the harmonic oscillator taken as an example, that the De Broglie’s dependence of the transition velocity on n is equal to the n-dependence of that velocity calculated with the aid of the uncertainty principle for the energy and time. In the next step the minimal distance parameter provided by the uncertainty principle is applied in calculating the magnetic moment of the electron which effectuates its orbital motion in the magnetic field. This application gives readily the electron spin magnetic moment as well as the quantum of the magnetic flux known in superconductors as its result. 展开更多
关键词 Velocity of the Electron Transitions between Quantum Levels De broglie Wave Packets Magnetic Moment of the Electron Spin Quantum of the Magnetic Flux The Uncertainty Principle for Energy and Time
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从德布罗意波到克莱因-戈登方程 被引量:1
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作者 刘紫玉 《咸阳师范学院学报》 2016年第6期48-49,61,共3页
根据光的波粒二象性,讨论了de Broglie物质波的相对论协变性。在相对论协变性的要求下,实物粒子物质波的相速度就是概率波的传播速度,而物质波的群速度就是实物粒子的运动速度。由de Broglie波直接得到了Klein-Gordon方程,特别地,当实... 根据光的波粒二象性,讨论了de Broglie物质波的相对论协变性。在相对论协变性的要求下,实物粒子物质波的相速度就是概率波的传播速度,而物质波的群速度就是实物粒子的运动速度。由de Broglie波直接得到了Klein-Gordon方程,特别地,当实物粒子静止质量为0,自旋为1时,Klein-Gordon方程就变为Lorentz规范下的自由光子方程。 展开更多
关键词 DE broglie KLEIN-GORDON方程 相速度 群速度
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德布罗意波的运动及扩散
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作者 徐金宏 张铭 拜爱萍 《扬州教育学院学报》 2008年第3期14-17,共4页
指出了一些文献中关于de Broglie波相速与群速关系的一个谬误,说明de Broglie波相速的超光速现象与波粒二象性并无矛盾。进一步研究了de Broglie波包的扩散问题,得出自由粒子和频谱函数φ(k)变化平缓的物质波波包基本不产生扩散,反之则... 指出了一些文献中关于de Broglie波相速与群速关系的一个谬误,说明de Broglie波相速的超光速现象与波粒二象性并无矛盾。进一步研究了de Broglie波包的扩散问题,得出自由粒子和频谱函数φ(k)变化平缓的物质波波包基本不产生扩散,反之则扩散效应较为明显。 展开更多
关键词 de broglie 波包 相速度 群速度 频谱函数 扩散
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Physical interpretation of Planck's constant based on the Maxwell theory 被引量:1
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作者 张东才 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第4期87-95,共9页
The discovery of the Planck relation is generally regarded as the starting point of quantum physics.Planck's constant h is now regarded as one of the most important universal constants.The physical nature of h,howeve... The discovery of the Planck relation is generally regarded as the starting point of quantum physics.Planck's constant h is now regarded as one of the most important universal constants.The physical nature of h,however,has not been well understood.It was originally suggested as a fitting constant to explain the black-body radiation.Although Planck had proposed a theoretical justification of h,he was never satisfied with that.To solve this outstanding problem,we use the Maxwell theory to directly calculate the energy and momentum of a radiation wave packet.We find that the energy of the wave packet is indeed proportional to its oscillation frequency.This allows us to derive the value of Planck's constant.Furthermore,we show that the emission and transmission of a photon follows the all-or-none principle.The "strength" of the wave packet can be characterized by ζ,which represents the integrated strength of the vector potential along a transverse axis.We reason that ζ should have a fixed cut-off value for all photons.Our results suggest that a wave packet can behave like a particle.This offers a simple explanation to the recent satellite observations that the cosmic microwave background follows closely the black-body radiation as predicted by Planck's law. 展开更多
关键词 Planck's constant Maxwell's theory de broglie relation uncertainty principle wave packet PHOTON
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A New Theory on Electron Wave-Particle Duality 被引量:2
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作者 Nader Butto 《Journal of High Energy Physics, Gravitation and Cosmology》 2020年第4期567-578,共12页
A theory employing the vortex shape of the electron was presented to resolve the enigma of the wave-particle duality. Conventions such as “particle” and “wave” were used to describe the behavior of quantum objects... A theory employing the vortex shape of the electron was presented to resolve the enigma of the wave-particle duality. Conventions such as “particle” and “wave” were used to describe the behavior of quantum objects such as electrons. A superfluid vacuum formed the base to describe the basic vortex structure and properties of the electron, whereas various formulations derived from hydrodynamic laws described the electron vortex circumference, radius, angular velocity and angular frequency, angular momentum (spin) and magnetic momentum. A vortex electron fully explained the associations between momentum and wave, and hydrodynamic laws were essential in deriving the energy and angular frequency of the electron. In general, an electron traveling in space possesses internal and external motions. To derive the angular frequency of its internal motion, the Compton wavelength was used to represent the length of one cycle of the internal motion that is equal to the circumference of the electron vortex. The angular frequency of the electron vortex was calculated to obtain the same value according to Planck’s theory. A traveling vortex electron has internal and external motions that create a three-dimensional helix trajectory. The magnitude of the instantaneous velocity of the electron is the resultant of its internal and external velocities, being equal to the internal velocity reduced by the Lorentz factor (whose essence is presented in a detailed formulation). The wavelength of the helix trajectory represents the distance traveled by a particle along its axis during one period of revolution around the axis, resulting in the same de Broglie wavelength that corresponds to the helix pitch of the helix. Mathematical formulations were presented to demonstrate the relation between the energy of the vortex and its angular frequency and de Broglie’s wavelength;furthermore, Compton’s and de Broglie’s wavelengths were also differentiated. 展开更多
关键词 Superfluid Vortex Compton Wavelength Electron Momentum broglie Wavelength Lorentz Factor Angular Frequency
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An Electron Model Consistent with Electron-Positron Pair Production from High Energy Photons 被引量:1
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作者 Donald Bowen Robert V. Mulkern 《Journal of Modern Physics》 2015年第9期1334-1342,共9页
This is a rotating charge loop model of an electron which explains the electron’s de Broglie base frequency to an accuracy of over 6 decimal places. The model also predicts the magnetic moment of the electron to over... This is a rotating charge loop model of an electron which explains the electron’s de Broglie base frequency to an accuracy of over 6 decimal places. The model also predicts the magnetic moment of the electron to over 6 decimal places and helps explain the transition from a purely electromagnetic photon to a fermion state of matter. The model also explains how charge and spin are conserved in the transition. Finally, this concept might be extended to explain the muon and tau higher energy states of the electron as well. 展开更多
关键词 ELECTRON POSITRON Loop MUON Tau Pair Production Photon FERMION Magnetic Moment De broglie
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The Real Reason Why the Electron’s Bare g-Factor Is 2 Times Classical 被引量:1
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作者 Donald Bowen 《Journal of Modern Physics》 2016年第10期1200-1209,共10页
When analyzing an Electron’s orbit’s and movements, a “classical” bare g-factor of “1” must be used, but when analyzing just the Electron itself, a bare g-factor and gyromagnetic ratio of twice the “classical”... When analyzing an Electron’s orbit’s and movements, a “classical” bare g-factor of “1” must be used, but when analyzing just the Electron itself, a bare g-factor and gyromagnetic ratio of twice the “classical” value is needed to fit reality. Nobody has fully explained this yet. By examining the electromagnetic wave nature of the electron, it is possible to show a simple reason why its bare g-factor must be 2, without resorting to superluminal velocities or dismissing it as mystically intrinsic. A simple charged electromagnetic wave loop (CEWL) model of the electron that maintains the same electromagnetic wave nature as the high-energy photons from which electron-positron pairs form, will have exactly half of its energy in the form of magnetic energy who’s field lines are perpendicular to the direction of the charge rotation, which leads to the conclusion that only half of the electron’s electromagnetic mass is rotational mass, from which it is easy to calculate a bare g-factor of 2 using Feynman’s equation for the electron’s g-factor. 展开更多
关键词 Electron g-Factor Magnetic Moment Spin Angular Momentum Magnetic Energy Charged Electromagnetic Wave Loop CEWL Pair Production General Relativity Mass de broglie Wave
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A Topological Transformation of Quantum Dynamics 被引量:1
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作者 Vu B.Ho 《Journal of Modern Physics》 2019年第2期102-127,共26页
In this work, we discuss the topological transformation of quantum dynamics by showing the wave dynamics of a quantum particle on different types of topological structures in various dimensions from the fundamental po... In this work, we discuss the topological transformation of quantum dynamics by showing the wave dynamics of a quantum particle on different types of topological structures in various dimensions from the fundamental polygons of the corresponding universal covering spaces. This is not the view from different perspectives of an observer who simply uses different coordinate systems to describe the same physical phenomenon but rather possible geometric and topological structures that quantum particles are endowed with when they are identified with differentiable manifolds that are embedded or immersed in Euclidean spaces of higher dimension. We present our discussions in the form of Bohr model in one, two and three dimensions using linear wave equations. In one dimension, the fundamental polygon is an interval and the universal covering space is the straight line and in this case the standing wave on a finite string is transformed into the standing wave on a circle which can be applied into the Bohr model of the hydrogen atom. In two dimensions, the fundamental polygon is a square and the universal covering space is the plane and in this case, the standing wave on the square is transformed into the standing wave on different surfaces that can be formed by gluing opposite sides of the square, which include a 2-sphere, a 2-torus, a Klein bottle and a projective plane. In three dimensions, the fundamental polygon is a cube and the universal covering space is the three-dimensional Euclidean space. It is shown that a 3-torus and the manifold K?× S1?defined as the product of a Klein bottle and a circle can be constructed by gluing opposite faces of a cube. Therefore, in three-dimensions, the standing wave on a cube is transformed into the standing wave on a 3-torus or on the manifold K?× S1. We also suggest that the mathematical degeneracy may play an important role in quantum dynamics and be associated with the concept of wavefunction collapse in quantum mechanics. 展开更多
关键词 Quantum Topology Topological Transformation Quantum Dynamics Differentiable Geometry and Topology Differentiable Manifolds Schrodinger Wave Mechanics Bohr Model in One Two and Three Dimensions de broglie Wave-Particle Duality
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Primary Assumptions and Guidance Laws in Wave Mechanics
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作者 Adriano Orefice Raffaele Giovanelli Domenico Ditto 《Journal of Applied Mathematics and Physics》 2018年第12期2621-2634,共14页
In an article written by Louis de Broglie in 1959 (30 years after the Nobel prize rewarding his foundation of Wave Mechanics), the most challenging problem raised by the Bohr, Heisenberg and Born Standard Quantum Mech... In an article written by Louis de Broglie in 1959 (30 years after the Nobel prize rewarding his foundation of Wave Mechanics), the most challenging problem raised by the Bohr, Heisenberg and Born Standard Quantum Mechanics (SQM) was pointed out in the renunciation to describe “a permanent localization in space, and therefore a well-defined trajectory” for any moving particle. This challenge is taken up in the present paper, showing that de Broglie’s Primary Assumption p=hk, predicting the wave-particle duality, does also allow to obtain from the energy-dependent form of the Schr&#246;dinger and/or Klein-Gordon equations the Guidance Laws piloting particles along well-defined trajectories. The energy-independent equations, on the other hand, may only give rise—both in SQM and in the Bohmian approach—to probabilistic descriptions, overshadowing the role of de Broglie’s matter waves in physical space. 展开更多
关键词 Helmholtz Equation Wave Potential Hamilton-Jacobi Equations Wave Mechanics de broglie’s Duality Matter Waves Guidance Laws Schrodinger Equations Klein-Gordon Equations
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The Dynamics of Wave-Particle Duality
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作者 Adriano Orefice Raffaele Giovanelli Domenico Ditto 《Journal of Applied Mathematics and Physics》 2018年第9期1840-1859,共20页
Both classical and wave-mechanical monochromatic waves may be treated in terms of exact ray-trajectories (encoded in the structure itself of Helmholtz-like equations) whose mutual coupling is the one and only cause of... Both classical and wave-mechanical monochromatic waves may be treated in terms of exact ray-trajectories (encoded in the structure itself of Helmholtz-like equations) whose mutual coupling is the one and only cause of any diffraction and interference process. In the case of Wave Mechanics, de Broglie’s merging of Maupertuis’s and Fermat’s principles (see Section 3) provides, without resorting to the probability-based guidance-laws and flow-lines of the Bohmian theory, the simple law addressing particles along the Helmholtz rays of the relevant matter waves. The purpose of the present research was to derive the exact Hamiltonian ray-trajectory systems concerning, respectively, classical electromagnetic waves, non-relativistic matter waves and relativistic matter waves. We faced then, as a typical example, the numerical solution of non-relativistic wave-mechanical equation systems in a number of numerical applications, showing that each particle turns out to “dances a wave-mechanical dance” around its classical trajectory, to which it reduces when the ray-coupling is neglected. Our approach reaches the double goal of a clear insight into the mechanism of wave-particle duality and of a reasonably simple computability. We finally compared our exact dynamical approach, running as close as possible to Classical Mechanics, with the hydrodynamic Bohmian theory, based on fluid-like “guidance laws”. 展开更多
关键词 Helmholtz Equation Wave Potential Hamilton-Jacobi Equation Wave Mechanics De broglie’s Duality Matter Waves Guidance Laws Schrodinger Equations Klein-Gordon Equation
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