Quantum algorithms to simulate many-body physics of correlated fermions.
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- Type
- article
- Published
- 2017-11-15
- Cited by
- 183
- References
- 70
- Access
- Open access
- OpenAlex
- https://openalex.org/W2770917698
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:54064506
Keywords
Fermion, Qubit, Parity (physics), Quantum, Quantum computer
References
- The strong-correlations puzzle
- Fidelity study of the superconducting phase diagram in the two-dimensional single-band Hubbard model
- 16.447 TFlops and 159-Billion-dimensional Exact-diagonalization for Trapped Fermion-Hubbard Model on the Earth Simulator
- Renormalization-group analysis of the two-dimensional Hubbard model
- On the Chemical Basis of Trotter-Suzuki Errors in Quantum Chemistry Simulation
- Ground-state phase diagram of the square lattice Hubbard model from density matrix embedding theory
- Quantum optimal control theory
- Mapping local Hamiltonians of fermions to local Hamiltonians of spins
- On-chip quantum simulation with superconducting circuits
- Pairing symmetry in cuprate superconductors
- The case for dx2 − y2 pairing in the cuprate superconductors
- On the product of semi-groups of operators
- Spin and charge order around vortices and impurities in high-T(c) superconductors.
- Localization of preformed Cooper pairs in disordered superconductors
- d-wave superconductivity in the hubbard model
- Inhomogeneous Electron Gas
- Quantum circuits for strongly correlated quantum systems
- Density-matrix algorithms for quantum renormalization groups.
- Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations
- Disorder-induced localization in a strongly correlated atomic Hubbard gas.
Cited by
- OpenFermion: the electronic structure package for quantum computers
- Improved techniques for preparing eigenstates of fermionic Hamiltonians
- Majorana-Based Fermionic Quantum Computation.
- Low-depth circuit ansatz for preparing correlated fermionic states on a quantum computer
- Universal quantum control through deep reinforcement learning
- Encoding Electronic Spectra in Quantum Circuits with Linear T Complexity
- Exact Ising model simulation on a quantum computer
- Low rank representations for quantum simulation of electronic structure
- Error-Mitigated Digital Quantum Simulation.
- Quantum computational chemistry
- Jordan–Wigner transformations for tree structures
- Finding the ground state of the Hubbard model by variational methods on a quantum computer with gate errors
- A flexible high-performance simulator for verifying and benchmarking quantum circuits implemented on real hardware
- Majorana Loop Stabilizer Codes for Error Mitigation in Fermionic Quantum Simulations
- Open shell electronic state calculations on quantum computers: A quantum circuit for the preparation of configuration state functions based on Serber construction
- Quantum Chemistry in the Age of Quantum Computing.
- Variational Quantum Simulation for Quantum Chemistry
- Variational quantum eigensolver with fewer qubits
- Digital Quantum Simulation of Few-body Hamiltonians on a Noisy Quantum Computer
- Improved Fault-Tolerant Quantum Simulation of Condensed-Phase Correlated Electrons via Trotterization
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