develop #17
@ -30,74 +30,31 @@ def plot():
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lines = f.readlines()
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size = int(lines[0])
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for i, line in enumerate(lines[1:]):
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# Create figures for each plot
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# fig1, ax1 = plt.subplots()
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# fig2, ax2 = plt.subplots()
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# fig3, ax3 = plt.subplots()
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arr = line.strip().split("\t")
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arr = np.asarray(list(map(lambda x: complex(*ast.literal_eval(x)), arr)))
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# Reshape and transpose array
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arr = arr.reshape(size, size).T
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# Plot color maps
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color_map1 = axes[0, i].imshow(
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axes[0, i].imshow(
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np.multiply(arr, arr.conj()).real,
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interpolation="nearest",
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cmap=sns.color_palette("mako", as_cmap=True)
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)
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color_map2 = axes[1, i].imshow(
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axes[1, i].imshow(
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arr.real,
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interpolation="nearest",
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cmap=sns.color_palette("mako", as_cmap=True)
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)
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color_map3 = axes[2, i].imshow(
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axes[2, i].imshow(
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arr.imag,
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interpolation="nearest",
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cmap=sns.color_palette("mako", as_cmap=True)
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)
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# Create color bar
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# Create tight subplots and save figure
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fig.subplots_adjust(wspace=0, hspace=0)
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# fig.colorbar(color_map1, ax=axes[0, 2])
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# fig.colorbar(color_map2, ax=axes[1, 2])
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# fig.colorbar(color_map3, ax=axes[2, 2])
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# Remove grids
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# for i in range(3):
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# axes[i, 0].set_xticks([])
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# axes[i, 0].set_yticks([])
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# axes[i, 0].
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# axes[i, 1].set_xticks([])
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# axes[i, 1].set_yticks([])
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# axes[i, 2].set_xticks([])
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# axes[i, 2].set_yticks([])
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# axes[0].set_xticks([])
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# axes[0].set_yticks([])
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# axes[1].set_xticks([])
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# axes[].set_yticks([])
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# axes[].set_xticks([])
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# axes[].set_yticks([])
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# # Set labels
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# ax1.set_xlabel("x-axis")
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# ax1.set_ylabel("y-axis")
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# ax2.set_xlabel("x-axis")
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# ax2.set_ylabel("y-axis")
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# ax3.set_xlabel("x-axis")
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# ax3.set_ylabel("y-axis")
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# # Save the figures
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plt.savefig(f"latex/images/color_map_all.pdf", bbox_inches="tight")
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# fig2.savefig(f"latex/images/color_map_{i}_real.pdf", bbox_inches="tight")
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# fig3.savefig(f"latex/images/color_map_{i}_imag.pdf", bbox_inches="tight")
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# # Close figures
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# plt.close(fig1)
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# plt.close(fig2)
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# plt.close(fig3)
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fig.savefig(f"latex/images/color_map_all.pdf", bbox_inches="tight")
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if __name__ == "__main__":
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