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Added image and updated readme.
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README.md
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README.md
@ -82,6 +82,16 @@ true # Restrict the hole to the 1'st (i.e. half of natom) Family of states.
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mpiexec -n [nprocs] ./ex1 inpfile
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```
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_Sample Application_
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--------------------
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A 2D t-J model Hamiltonian description and setup for using DEHam to solve for few low lying states
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is provided in the notbooks folder. Please have a look about the details of using DEHam to study
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t-J Hamiltonians.
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![4x4 Lattice](https://raw.githubusercontent.com/v1j4y/DEHam/master/notebook/graph.png)
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_Publications using this code_
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-------------------------------
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BIN
notebooks/graph.png
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notebooks/graph.png
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After Width: | Height: | Size: 332 KiB |
@ -160,7 +160,7 @@
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},
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{
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"cell_type": "code",
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"execution_count": 138,
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"execution_count": 150,
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"metadata": {},
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"outputs": [
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{
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@ -178,11 +178,14 @@
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"import matplotlib as mplt\n",
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"import networkx as nx\n",
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"import numpy as np\n",
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"import matplotlib.pyplot as plt\n",
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"\n",
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"Lx = 4\n",
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"Ly = 4\n",
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"\n",
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"draw2DLattice(Lx,Ly)"
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"#fig = plt.figure()\n",
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"#draw2DLattice(Lx,Ly,fig)\n",
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"draw2DLattice(Lx,Ly)\n",
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"#fig.savefig(\"/tmp/graph.png\",dpi=1000)"
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]
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},
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{
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@ -291,7 +294,7 @@
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},
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{
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"cell_type": "code",
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"execution_count": 17,
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"execution_count": 149,
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"metadata": {
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"jupyter": {
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"source_hidden": true
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@ -364,6 +367,8 @@
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" countcolor+=1\n",
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"\n",
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"\n",
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"# nx.draw(G, pos=pos, labels=labelscenter, node_color=color_map, font_color=\"white\", ax=fig.add_subplot(111));\n",
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"# nx.draw_networkx_edge_labels(G,pos,edge_labels=edgescenter,font_color=\"black\", ax=fig.add_subplot(111));\n",
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" nx.draw(G, pos=pos, labels=labelscenter, node_color=color_map, font_color=\"white\");\n",
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" nx.draw_networkx_edge_labels(G,pos,edge_labels=edgescenter,font_color=\"black\");\n"
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]
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