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1
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0003437218
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Addison-Wesley, New York, 3rd ed.
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See for example, H. Goldstein, C. Poole, and J. Safko, Classical Mechanics (Addison-Wesley, New York, 2002), 3rd ed., pp. 316-317; J. V. Jose and E. J. Saletan, Classical Dynamics: A Contemporary Approach (Cambridge, New York, 1998), pp. 211-212; E. Saletan and A. H. Cromer, Theoretical Mechanics (Wiley, New York, 1971); H. C. Corben and P. Stehle, Classical Mechanics (Dover, New York, 1994) (a re-publication of the 1960 edition). Goldstein, Poole, and Safko discuss the relativistic one-dimensional harmonic oscillator in Sec. 7.9. Jose and Saletan treat the relativistic Kepler problem in Sec. 5.1, but do not mention Darwin's spiral trajectories.
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Classical Mechanics
, pp. 316-317
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Goldstein, H.1
Poole, C.2
Safko, J.3
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2
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0004181240
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Cambridge, New York
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See for example, H. Goldstein, C. Poole, and J. Safko, Classical Mechanics (Addison-Wesley, New York, 2002), 3rd ed., pp. 316-317; J. V. Jose and E. J. Saletan, Classical Dynamics: A Contemporary Approach (Cambridge, New York, 1998), pp. 211-212; E. Saletan and A. H. Cromer, Theoretical Mechanics (Wiley, New York, 1971); H. C. Corben and P. Stehle, Classical Mechanics (Dover, New York, 1994) (a re-publication of the 1960 edition). Goldstein, Poole, and Safko discuss the relativistic one-dimensional harmonic oscillator in Sec. 7.9. Jose and Saletan treat the relativistic Kepler problem in Sec. 5.1, but do not mention Darwin's spiral trajectories.
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(1998)
Classical Dynamics: A Contemporary Approach
, pp. 211-212
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Jose, J.V.1
Saletan, E.J.2
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3
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0004246165
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-
Wiley, New York
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See for example, H. Goldstein, C. Poole, and J. Safko, Classical Mechanics (Addison-Wesley, New York, 2002), 3rd ed., pp. 316-317; J. V. Jose and E. J. Saletan, Classical Dynamics: A Contemporary Approach (Cambridge, New York, 1998), pp. 211-212; E. Saletan and A. H. Cromer, Theoretical Mechanics (Wiley, New York, 1971); H. C. Corben and P. Stehle, Classical Mechanics (Dover, New York, 1994) (a re-publication of the 1960 edition). Goldstein, Poole, and Safko discuss the relativistic one-dimensional harmonic oscillator in Sec. 7.9. Jose and Saletan treat the relativistic Kepler problem in Sec. 5.1, but do not mention Darwin's spiral trajectories.
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(1971)
Theoretical Mechanics
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Saletan, E.1
Cromer, A.H.2
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4
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0003437213
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Dover, New York (a re-publication of the 1960 edition)
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See for example, H. Goldstein, C. Poole, and J. Safko, Classical Mechanics (Addison-Wesley, New York, 2002), 3rd ed., pp. 316-317; J. V. Jose and E. J. Saletan, Classical Dynamics: A Contemporary Approach (Cambridge, New York, 1998), pp. 211-212; E. Saletan and A. H. Cromer, Theoretical Mechanics (Wiley, New York, 1971); H. C. Corben and P. Stehle, Classical Mechanics (Dover, New York, 1994) (a re-publication of the 1960 edition). Goldstein, Poole, and Safko discuss the relativistic one-dimensional harmonic oscillator in Sec. 7.9. Jose and Saletan treat the relativistic Kepler problem in Sec. 5.1, but do not mention Darwin's spiral trajectories.
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(1994)
Classical Mechanics
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Corben, H.C.1
Stehle, P.2
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5
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4043092251
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On some orbits of an electron
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Such orbits appear in the work of C. G. Darwin, "On some orbits of an electron," Philos. Mag. 25, 201-210 (1913) in connection with the scattering of β particles in Rutherford's model for an atom. Darwin wrote just before the publication of Bohr's model for hydrogen.
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Darwin, C.G.1
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6
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1842575904
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Quantum mechanical ground state of hydrogen obtained from classical electrodynamics
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D. C. Cole and Y. Zou, "Quantum mechanical ground state of Hydrogen obtained from classical electrodynamics," Phys. Lett. A 317, 14-20 (2003).
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Phys. Lett. A
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Cole, D.C.1
Zou, Y.2
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7
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0346463055
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Comments on cole and Zou's calculation of the hydrogen ground state in classical physics
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T. H. Boyer, "Comments on Cole and Zou's calculation of the Hydrogen ground state in classical physics," Found. Phys. Lett. 16, 607-611 (2003).
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Found. Phys. Lett.
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, pp. 607-611
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Boyer, T.H.1
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8
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0004673529
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Dover, New York
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A. E. Ruark and H. C. Urey, Atoms, Molecules, and Quanta (Dover, New York, 1965), p. 134.
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(1965)
Atoms, Molecules, and Quanta
, pp. 134
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Ruark, A.E.1
Urey, H.C.2
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9
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3743129563
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The special and general relativistic effects on orbits around point masses
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The existence of a lower limit for the angular momentum appears in the work of U. Torkelsson, "The special and general relativistic effects on orbits around point masses," Eur. J. Phys. 19, 459-464 (1998). He remarks, "For relativistic motion in the Coulomb potential the centrifugal barrier disappears at a small, but still finite, specific angular momentum." He also notes that "there are no stable orbits" for small angular momentum, L<α/c.
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Eur. J. Phys.
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Torkelsson, U.1
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10
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33646646046
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private communication
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n (where k and n are constants) also involve interesting nonrelativistic and relativistic restrictions on angular momentum for circular orbits.
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Aguirregabiria, J.M.1
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11
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33645578123
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Kluwer Academic, Dordrecht
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See the review by L. de la Pena and A. M. Cetto, The Quantum Dice - An Introduction to Stochastic Electrodynamics (Kluwer Academic, Dordrecht, 1996). A brief introduction is given by T. H. Boyer, "Random electrodynamics: The theory of classical electrodynamics with classical electromagnetic zero-point radiation," Phys. Rev. D 11, 790-808 (1975).
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(1996)
The Quantum Dice - An Introduction to Stochastic Electrodynamics
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De La Pena, L.1
Cetto, A.M.2
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12
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33645578123
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Random electrodynamics: The theory of classical electrodynamics with classical electromagnetic zero-point radiation
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See the review by L. de la Pena and A. M. Cetto, The Quantum Dice - An Introduction to Stochastic Electrodynamics (Kluwer Academic, Dordrecht, 1996). A brief introduction is given by T. H. Boyer, "Random electrodynamics: The theory of classical electrodynamics with classical electromagnetic zero-point radiation," Phys. Rev. D 11, 790-808 (1975).
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Phys. Rev. D
, vol.11
, pp. 790-808
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Boyer, T.H.1
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13
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85085673319
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Stochastic electrodynamics of nonlinear systems. I. Particle in a central field of force
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T. Marshall and P. Claverie, "Stochastic electrodynamics of nonlinear systems. I. Particle in a central field of force," J. Math. Phys. 21, 1918-1925 (1980); P. Claverie, L. Pesquera, and F. Soto, "Existence of a constant stationary solution for the hydrogen atom problem in stochastic electrodynamics," Phys. Lett. A 80, 113-116 (1980); A. Denis, L. Pesquera, and P. Claverie, "Linear response of stochastic multiperiodic systems in stationary states with application to stochastic electrodynamics," Physica A 109, 178-192 (1981); P. Claverie and F. Soto, "Nonrecurrence of the stochastic process for the hydrogen atom problem in stochastic electrodynamics," J. Math. Phys. 23, 753-759 (1982).
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J. Math. Phys.
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, pp. 1918-1925
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Marshall, T.1
Claverie, P.2
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14
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84975663991
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Existence of a constant stationary solution for the hydrogen atom problem in stochastic electrodynamics
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T. Marshall and P. Claverie, "Stochastic electrodynamics of nonlinear systems. I. Particle in a central field of force," J. Math. Phys. 21, 1918-1925 (1980); P. Claverie, L. Pesquera, and F. Soto, "Existence of a constant stationary solution for the hydrogen atom problem in stochastic electrodynamics," Phys. Lett. A 80, 113-116 (1980); A. Denis, L. Pesquera, and P. Claverie, "Linear response of stochastic multiperiodic systems in stationary states with application to stochastic electrodynamics," Physica A 109, 178-192 (1981); P. Claverie and F. Soto, "Nonrecurrence of the stochastic process for the hydrogen atom problem in stochastic electrodynamics," J. Math. Phys. 23, 753-759 (1982).
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(1980)
Phys. Lett. A
, vol.80
, pp. 113-116
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Claverie, P.1
Pesquera, L.2
Soto, F.3
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15
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-
0142040043
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Linear response of stochastic multiperiodic systems in stationary states with application to stochastic electrodynamics
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T. Marshall and P. Claverie, "Stochastic electrodynamics of nonlinear systems. I. Particle in a central field of force," J. Math. Phys. 21, 1918-1925 (1980); P. Claverie, L. Pesquera, and F. Soto, "Existence of a constant stationary solution for the hydrogen atom problem in stochastic electrodynamics," Phys. Lett. A 80, 113-116 (1980); A. Denis, L. Pesquera, and P. Claverie, "Linear response of stochastic multiperiodic systems in stationary states with application to stochastic electrodynamics," Physica A 109, 178-192 (1981); P. Claverie and F. Soto, "Nonrecurrence of the stochastic process for the hydrogen atom problem in stochastic electrodynamics," J. Math. Phys. 23, 753-759 (1982).
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(1981)
Physica A
, vol.109
, pp. 178-192
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Denis, A.1
Pesquera, L.2
Claverie, P.3
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16
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-
36749120096
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Nonrecurrence of the stochastic process for the hydrogen atom problem in stochastic electrodynamics
-
T. Marshall and P. Claverie, "Stochastic electrodynamics of nonlinear systems. I. Particle in a central field of force," J. Math. Phys. 21, 1918-1925 (1980); P. Claverie, L. Pesquera, and F. Soto, "Existence of a constant stationary solution for the hydrogen atom problem in stochastic electrodynamics," Phys. Lett. A 80, 113-116 (1980); A. Denis, L. Pesquera, and P. Claverie, "Linear response of stochastic multiperiodic systems in stationary states with application to stochastic electrodynamics," Physica A 109, 178-192 (1981); P. Claverie and F. Soto, "Nonrecurrence of the stochastic process for the hydrogen atom problem in stochastic electrodynamics," J. Math. Phys. 23, 753-759 (1982).
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J. Math. Phys.
, vol.23
, pp. 753-759
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Claverie, P.1
Soto, F.2
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