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Published byEarl Hubbard Modified over 9 years ago
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1 The single quantum rotor CH 3 B H ~ 650 µeV CD 3 B D ~ 325 µeV Tunnelling Spectroscopy A 0 E 0 << ħ ph INS Quantum Rotation of Methyl Groups: Tunnelling
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2 Nonlinearity in the quantum regime Quantum dynamics in complex environments Isolated dynamics: Quantum Rotation of Methyl Groups: Tunnelling Crystal Structure-Methyl dynamics
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3 Experiments Neutron Diffraction: Powders, single X’stals Spectroscopy: Neutrons, Infrared, Raman Chemistry:Isotope substitutions
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4 The isolated chain of coupled methyl groups Approximation Hamiltonian
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5 4 Å 3.6Å 4-Methylpyridine: Infinite chains of Methyl groups
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6 F. Fillaux et al., Phys. Rev. B 68, 224301 (2003) -Picoline 10 K
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7 4-Methylpyridine: Inelastic Neutron Scattering F.Fillaux, C. J. Carlile and G. J. Kearley, Phys. Rev. B 58 (1998) 11416
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8 -Picoline
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9 Isotopic mixtures of 4MP-h 7 (%) and 4MP-d 7 Intensity (arb. units) Energy Transfer (meV) 100% h 7 85% h 7 65% h 7 50% h 7 26% h 7 20% h 7 5% h 7 0.20 0.40 0.30 0.500.60 F.Fillaux and C. J. Carlile, Phys. Rev. B 42 (1990) 5990
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10 The infinite chain of coupled methyl groups Energy band Hamiltonian
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11 4-Methylpyridine: Inelastic Neutron Scattering F.Fillaux, C. J. Carlile and G. J. Kearley, Phys. Rev. B 58 (1998) 11416
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12 The isolated chain of coupled methyl groups Hamiltonian Approximation
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13 Quantization (Semi-classical) Kink-mass renormalization Breather mass Threefold potential: only l=1 Dashen et al., Phys. Rev. D 11 (1975) 3424
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14 Quantization (Semi-classical)
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15 Kinetic energy Quantization rule The energy spectrum F.Fillaux and C. J. Carlile, Phys. Rev. B 42 (1990) 5990 Quantization
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16 4-Methylpyridine Single X’stal
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17 Quantum sine-Gordon Theory Free Breathers = Plane Waves Nonlocal Excitations in Nonlinear Complex Systems Quantum Rotation of Infinite Chains of Methyl Groups
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