Fast phase gates with trapped ions
arXiv:1609.01892 · doi:10.1103/PhysRevA.95.022328
Abstract
We implement faster-than-adiabatic two-qubit phase gates using smooth state-dependent forces. The forces are designed to leave no final motional excitation, independently of the initial motional state in the harmonic, small-oscillations limit. They are simple, explicit functions of time and the desired logical phase of the gate, and are based on quadratic invariants of motion and Lewis-Riesenfeld phases of the normal modes.
14 pages, 9 figures
References in corpus (4)
Cited by in corpus (34)
- Shortcuts to adiabaticity: concepts, methods, and applications
- Fast quantum logic gates with trapped-ion qubits
- Robust entanglement gates for trapped-ion qubits
- Robust and resource-efficient microwave near-field entangling Be gate
- Sub-microsecond entangling gate between trapped ions via Rydberg interaction
- Demonstration of two-atom entanglement with ultrafast optical pulses
- Single-step implementation of high fidelity -bit Toffoli gate
- Multiphoton Jaynes-Cummings Model: Arbitrary Rotations in Fock Space and Quantum Filters
- Theory of robust multi-qubit non-adiabatic gates for trapped-ions
- Noise Resistant Quantum Control Using Dynamical Invariants
- Efficient Generation of the Triplet Bell State Between Coupled Spins Using Transitionless Quantum Driving and Optimal Control
- Maximizing entanglement in bosonic Josephson junctions using shortcuts to adiabaticity and optimal control
- Invariant-based inverse engineering of crane control parameters
- Fast shuttling of a particle under weak spring-constant noise of the moving trap
- Breaking the entangling gate speed limit for trapped-ion qubits using a phase-stable standing wave
- Robust two-qubit trapped ions gates using spin-dependent squeezing
- Dynamical normal modes for time-dependent Hamiltonians in two dimensions
- Scalable quantum computing stabilised by optical tweezers on an ion crystal
- Invariant-based inverse engineering of time-dependent, coupled harmonic oscillators
- Fast and robust particle shuttling for quantum science and technology
- Interferometer for force measurement by shortcut-to-adiabatic arms guiding
- Interferometer with a driven trapped ion
- Fast multi-qubit global-entangling gates without individual addressing of trapped ions
- Strong-coupling quantum logic of trapped ions
- Fast state and trap rotation of a particle in an anisotropic potential
- Mølmer-Sørensen entangling gate for cavity QED systems
- Preparation of high fidelity entangled cat states with composite pulses
- Quantum optimal control in quantum technologies. Strategic report on current status, visions and goals for research in Europe
- Geometric phase gates in dissipative quantum dynamics
- Invariant-based inverse engineering for fast and robust load transport in a double pendulum bridge crane
- High-speed and high-connectivity two-qubit gates in long chains of trapped ions
- Error-Resilient Fast Entangling Gates for Scalable Ion-Trap Quantum Processors
- Numerically Optimizing Shortcuts to Adiabaticity: A Hybrid Control Strategy
- Invariant-based inverse engineering for balanced displacement of a cart-pole system