Updates
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@ -27,10 +27,11 @@
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#define DOWN 1
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#define RIGHT 1
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/** @brief The Ising model in 2 dimensions.
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*
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* @details Here we set \f$ J = 1 \f$, and the Boltzmann constant
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* \f$ k_B = 1 \f$.
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* @details None of the methods are parallelized, as there is very little
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* benefit in doing so.
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* */
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class IsingModel {
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private:
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@ -39,16 +40,26 @@ private:
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* */
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arma::Mat<int> lattice;
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/** @brief \f$ L \cross 2 \f$ matrix with the neighbors of each element
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* \f$ x_i \f$.
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*
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* @details The reason why it's \f$ L \cross 2 \f$ instead of
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* \f$ L \cross 2 \f$, is that we can see that we can use the same column
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* for the left and upper neighbor, and we can use the same column for the
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* right and lower neighbor.
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* */
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arma::Mat<uint> neighbors;
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/** @brief A hash map containing all possible energy changes.
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* */
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std::unordered_map<int, double> energy_diff;
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/** @brief Temperature
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/** @brief The temperature of the model.
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* */
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double T;
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/** @brief Size of the lattice.
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* */
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uint L;
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/** @brief The current energy state. unit: \f$ J \f$.
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@ -72,32 +83,57 @@ private:
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* */
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void initialize_lattice();
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/** @brief initialize the neighbors matrix.
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* */
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void initialize_neighbors();
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/** @brief Initialize the hashmap with the correct values.
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* */
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void initialize_energy_diff();
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/** @brief Initialize the model.
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/** @brief Initialize the magnetization.
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* */
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void initialize_magnetization();
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/** @brief Initialize the energy.
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* */
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void initialize_energy();
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/** @brief Constructor used for testing.
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* */
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IsingModel();
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public:
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/** @brief Constructor for the Ising model.
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*
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* @param L The size of the lattice.
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* @param T The temperature for the system.
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* */
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IsingModel(uint L, double T);
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/** @brief Constructor for the Ising model.
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*
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* @param L The size of the lattice.
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* @param T The temperature for the system.
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* @param val The value to set for all spins.
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* */
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IsingModel(uint L, double T, int val);
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/** @brief The Metropolis algorithm.
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* */
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void Metropolis(std::mt19937 engine);
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/** @brief Get the current energy.
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*
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* @return int
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* */
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int get_E();
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/** @brief Get the current magnetization.
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*
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* @return int
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* */
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int get_M();
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};
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#endif
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@ -14,8 +14,13 @@
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#include "constants.hpp"
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#include <cmath>
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#include <random>
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IsingModel::IsingModel()
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{
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}
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IsingModel::IsingModel(uint L, double T)
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{
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this->L = L;
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@ -55,11 +60,11 @@ void IsingModel::initialize_neighbors()
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{
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this->neighbors.set_size(this->L, 2);
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for (int i = 0; i < this->L; i++) {
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// Having i as a signed integer is necessary in this case.
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for (int i = 0; i < (int)this->L; i++) {
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this->neighbors(i, UP) = INDEX(i - 1, this->L);
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this->neighbors(i, DOWN) = INDEX(i + 1, this->L);
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}
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this->neighbors.print();
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}
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void IsingModel::initialize_energy_diff()
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@ -98,7 +103,7 @@ void IsingModel::Metropolis(std::mt19937 engine)
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std::uniform_real_distribution<> random_number(0., 1.);
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// Loop over the number of spins
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for (int i = 0; i < this->lattice.n_elem; i++) {
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for (size_t i = 0; i < this->lattice.n_elem; i++) {
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// Get random indeces
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ri = random_index(engine);
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rj = random_index(engine);
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@ -119,3 +124,13 @@ void IsingModel::Metropolis(std::mt19937 engine)
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}
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}
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}
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int IsingModel::get_E()
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{
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return this->E;
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}
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int IsingModel::get_M()
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{
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return this->M;
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}
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