Digital-Analog Quantum Simulation of Spin Models in Trapped Ions
arXiv:1602.06248 · doi:10.1038/srep30534
Abstract
We propose a method to simulate spin models in trapped ions using a digital-analog approach, consisting in a suitable gate decomposition in terms of analog blocks and digital steps. In this way, we show that the quantum dynamics of an enhanced variety of spin models could be implemented with substantially less number of gates than a fully digital approach. Typically, analog blocks are built of multipartite dynamics providing the complexity of the simulated model, while the digital steps are local operations bringing versatility to it. Finally, we describe a possible experimental implementation in trapped-ion technologies.
References in corpus (9)
- Quantum computing with trapped ions
- 14-qubit entanglement: creation and coherence
- High-fidelity quantum logic gates using trapped-ion hyperfine qubits
- High-fidelity preparation, gates, memory and readout of a trapped-ion quantum bit
- Digitized adiabatic quantum computing with a superconducting circuit
- Digital quantum simulation of fermionic models with a superconducting circuit
- Dirac Equation and Quantum Relativistic Effects in a Single Trapped Ion
- Digital quantum simulation of spin models with circuit quantum electrodynamics
- Quantum simulation of the Klein paradox with trapped ions
Cited by in corpus (54)
- Challenges and Opportunities in Quantum Optimization
- Digital Quantum Simulation of Minimal AdS/CFT
- Digital-Analog Quantum Computation
- Long-range Heisenberg models in quasi-periodically driven crystals of trapped ions
- Scalar Quantum Field Theories as a Benchmark for Near-Term Quantum Computers
- Digital quantum simulation of many-body non-Markovian dynamics
- Nonlinear Quantum Rabi Model in Trapped Ions
- Quantum Kibble-Zurek physics in long-range transverse-field Ising models
- Digital-analog quantum simulation of generalized Dicke models with superconducting circuits
- Digital-analog quantum algorithm for the quantum Fourier transform
- Quantum simulation of driven para-Bose oscillators
- Analog quantum simulation of generalized Dicke models in trapped ions
- Observation of magnon bound states in the long-range, anisotropic Heisenberg model
- Fast scrambling without appealing to holographic duality
- Algorithm for the solution of the Dirac equation on digital quantum computers
- Fermion-antifermion scattering via boson exchange in a trapped ion
- Pulsed Dynamical Decoupling for Fast and Robust Two-Qubit Gates on Trapped Ions
- Characterizing Topological Excitations of a Long-Range Heisenberg Model with Trapped Ions
- Digital-Analog Quantum Simulations Using The Cross-Resonance Effect
- Superconducting Circuit Architecture for Digital-Analog Quantum Computing
- Factorization and criticality in finite XXZ systems of arbitrary spin
- Simulating para-Fermi oscillators
- Localized dynamics following a quantum quench in a non-integrable system: An example on the sawtooth ladder
- The TRAPSENSOR Facility: an Open-Ring 7-Tesla Penning Trap for Laser-Based Precision Experiments
- A Single-Ion Reservoir as a High-Sensitive Sensor of Electric Signals
- Scale-invariant freezing of entanglement
- Digital quantum simulation framework for energy transport in an open quantum system
- Experimental demonstration of a measurement-based realisation of a quantum channel
- Probabilistic Eigensolver with a Trapped-Ion Quantum Processor
- Digital-analog quantum computing of fermion-boson models in superconducting circuits
- Digital-analog quantum convolutional neural networks for image classification
- Low-temperature environments for quantum computation and quantum simulation
- Novel Trotter formulas for digital quantum simulation
- Parameterized Hamiltonian simulation using quantum optimal control
- Quantum simulation of fermionic systems using hybrid digital-analog quantum computing approach
- Phase-adaptive dynamical decoupling methods for robust spin-spin dynamics in trapped ions
- Modelling noise in global Molmer-Sorensen interactions applied to quantum approximate optimization
- Universal quantum processors in spin systems via robust local pulse sequences
- Coherent excitation transport through ring-shaped networks
- Switchable Particle Statistics with an Embedding Quantum Simulator
- Noise-aware variational eigensolvers: a dissipative route for lattice gauge theories
- Separability and parity transitions in spin systems under nonuniform fields
- Quantum simulation of the Weyl equation with a trapped ion
- Analyzing the spectral density of a perturbed analog quantum simulator using Keldysh formalism
- Inducing critical phenomena in spin chains through sparse alternating fields
- Non-Markovianity between site-pairs in FMO complex using discrete-time quantum jump model
- Multi-Mode Global Driving of Trapped Ions for Quantum Circuit Synthesis
- Reliability of digitized quantum annealing and the decay of entanglement
- Benchmarking Digital-Analog Quantum Computation
- Qubits on programmable geometries with a trapped-ion quantum processor
- Covariance-based method for eigenstate factorization and generalized singlets
- A theory of quasiballistic spin transport
- Digital Quantum Simulation of Hadronization in Yang-Mills Theory
- Hamiltonian simulation with explicit formulas for Digital-Analog Quantum Computing