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Treball de fi de grau

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cc-by-nc-nd (c) Ramon, 2023
Si us plau utilitzeu sempre aquest identificador per citar o enllaçar aquest document: https://hdl.handle.net/2445/201770

Simulation of the nuclear shell-model with quantum circuits

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This thesis focuses on the study of the nuclear shell-model through the implementation of quantum circuits. Each single-particle state in a shell is associated with a qubit in state |1⟩ if occupied and |0⟩ if empty. By employing the system’s Hamiltonian and utilizing the Jordan-Wigner mapping, creation and annihilation fermion operators are transformed into Pauli matrix terms, enabling their implementation in a quantum circuit through quantum gates. To simulate this system, an Adaptive Variational Quantum Eigensolver (ADAPT-VQE) is employed, which iteratively constructs a wavefunction that minimizes the energy at each step. Through repeated iterations, an upper bound for the ground state energy is obtained

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Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2023, Tutors: Axel Pérez-Obiol, Bruno Juliá Díaz

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RAMON ESCANDELL, Carlos. Simulation of the nuclear shell-model with quantum circuits. [consulta: 23 de gener de 2026]. [Disponible a: https://hdl.handle.net/2445/201770]

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