Create bands_of_SSH_model_with_two_kinds_of_fourier_transform.py
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import numpy as np
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from math import *
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import cmath
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import guan
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v=0.6
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w=1
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k = np.linspace(-pi ,pi, 100)
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def hamiltonian_1(k):
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matrix = np.zeros((2, 2), dtype=complex)
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matrix[0,1] = v+w*cmath.exp(-1j*k)
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matrix[1,0] = v+w*cmath.exp(1j*k)
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return matrix
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def hamiltonian_2(k):
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matrix = np.zeros((2, 2), dtype=complex)
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matrix[0,1] = v*cmath.exp(1j*k/2)+w*cmath.exp(-1j*k/2)
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matrix[1,0] = v*cmath.exp(-1j*k/2)+w*cmath.exp(1j*k/2)
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return matrix
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E_1 = guan.calculate_eigenvalue_with_one_parameter(k, hamiltonian_1)
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guan.plot(k, E_1, xlabel='k', ylabel='E_1')
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E_2 = guan.calculate_eigenvalue_with_one_parameter(k, hamiltonian_2)
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guan.plot(k, E_2, xlabel='k', ylabel='E_2')
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