Update Wilson_loop_in_SSH_model.py
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@ -7,7 +7,6 @@ import numpy as np
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import cmath
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from math import *
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def hamiltonian(k): # SSH模型哈密顿量
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gamma = 0.5
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lambda0 = 1
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@ -18,15 +17,14 @@ def hamiltonian(k): # SSH模型哈密顿量
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h[1,0] = gamma+lambda0*cmath.exp(1j*k)
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return h
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def main():
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Num_k = 100
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k_array = np.linspace(-pi, pi, Num_k)
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vector_array = []
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for k in k_array:
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vector = get_occupied_bands_vectors(k, hamiltonian)
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vector_array.append(vector)
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# vector_array.append(vector*cmath.exp(1j*np.random.uniform(0, pi))) # 随机相位测试
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# vector_array.append(vector)
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vector_array.append(vector*cmath.exp(1j*np.random.uniform(0, pi))) # 随机相位测试
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# 波函数固定一个规范
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vector_sum = 0
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@ -34,11 +32,9 @@ def main():
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vector_sum += np.abs(vector_array[i0])
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index = np.argmax(np.abs(vector_sum))
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for i0 in range(Num_k):
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vector_array[i0] = find_vector_with_fixed_gauge_by_making_one_component_real(vector_array[i0], index=index)
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# # 波函数固定一个规范
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# import guan
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# vector_array = guan.find_vector_array_with_fixed_gauge_by_making_one_component_real(vector_array, precision=0.005)
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angle = cmath.phase(vector_array[i0][index])
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vector_array[i0] = vector_array[i0]*cmath.exp(-1j*angle)
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# vector_array[i0] = find_vector_with_fixed_gauge_by_making_one_component_real(vector_array[i0], index=index) # 或者使用这种寻找查找方法,计算效率比较低
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# 计算Wilson loop
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W_k = 1
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@ -48,30 +44,27 @@ def main():
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nu = np.log(W_k)/2/pi/1j
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# if np.real(nu) < 0:
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# nu += 1
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print('p=', nu, '\n')
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print('p=', nu)
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def get_occupied_bands_vectors(x, matrix):
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matrix0 = matrix(x)
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eigenvalue, eigenvector = np.linalg.eig(matrix0)
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vector = eigenvector[:, np.argsort(np.real(eigenvalue))[0]]
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return vector
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def find_vector_with_fixed_gauge_by_making_one_component_real(vector, precision=0.005, index=None):
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if index == None:
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index = np.argmax(np.abs(vector))
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sign_pre = np.sign(np.imag(vector[index]))
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for phase in np.arange(0, 2*np.pi, precision):
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sign = np.sign(np.imag(vector[index]*cmath.exp(1j*phase)))
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if np.abs(np.imag(vector[index]*cmath.exp(1j*phase))) < 1e-9 or sign == -sign_pre:
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break
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sign_pre = sign
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vector = vector*cmath.exp(1j*phase)
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if np.real(vector[index]) < 0:
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vector = -vector
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return vector
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# def find_vector_with_fixed_gauge_by_making_one_component_real(vector, precision=0.005, index=None):
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# if index == None:
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# index = np.argmax(np.abs(vector))
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# sign_pre = np.sign(np.imag(vector[index]))
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# for phase in np.arange(0, 2*np.pi, precision):
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# sign = np.sign(np.imag(vector[index]*cmath.exp(1j*phase)))
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# if np.abs(np.imag(vector[index]*cmath.exp(1j*phase))) < 1e-9 or sign == -sign_pre:
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# break
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# sign_pre = sign
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# vector = vector*cmath.exp(1j*phase)
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# if np.real(vector[index]) < 0:
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# vector = -vector
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# return vector
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if __name__ == '__main__':
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main()
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