Physically feasible three-level transitionless quantum driving with multiple Schrödinger dynamics
arXiv:1602.00050 · doi:10.1103/PhysRevA.93.052324
Abstract
Three-level quantum systems, which possess some unique characteristics beyond two-level ones, such as electromagnetically induced transparency, coherent trapping, and Raman scatting, play important roles in solid-state quantum information processing. Here, we introduce an approach to implement the physically feasible three-level transitionless quantum driving with multiple Schrödinger dynamics (MSDs). It can be used to control accurately population transfer and entanglement generation for three-level quantum systems in a nonadiabatic way. Moreover, we propose an experimentally realizable hybrid architecture, based on two nitrogen-vacancy-center ensembles coupled to a transmission line resonator, to realize our transitionless scheme which requires fewer physical resources and simple procedures, and it is more robust against environmental noises and control parameter variations than conventional adiabatic passage techniques. All these features inspire the further application of MSDs on robust quantum information processing in experiment.
7 pages, 4 figures. A trivial error of typo on Eq. (17) in Phys. Rev. A 93, 052324 (2016) is corrected. This correction does not affect any other part of the paper, leaving unchanged our discussion. In fact, this equation in the first version of this paper shown on arXiv is correct
References in corpus (9)
- Strong Coupling of a Spin Ensemble to a Superconducting Resonator
- Shortcut to adiabatic passage in two and three level atoms
- Lewis-Riesenfeld invariants and transitionless tracking algorithm
- Coherence of Nitrogen-Vacancy Electronic Spin Ensembles in Diamond
- Fast population transfer engineering of three-level systems
- Stimulated Raman adiabatic passage in a three-level superconducting circuit
- Superadiabatic Controlled Evolutions and Universal Quantum Computation
- Shortcuts to adiabaticity in three-level systems using Lie transforms
- Optimizing a Dynamical Decoupling Protocol for Solid-State Electronic Spin Ensembles in Diamond
Cited by in corpus (48)
- Shortcuts to adiabaticity: concepts, methods, and applications
- Floquet-engineering counterdiabatic protocols in quantum many-body systems
- Shortcut to adiabatic population transfer in quantum three-level systems: effective two-level problems and feasible counter-diabatic driving
- Fast preparation of W states with superconducting quantum interference devices by using dressed states
- Superadiabatic Holonomic Quantum Computation in Cavity QED
- Fast quantum state engineering via universal SU(2) transformation
- Reverse engineering of a Hamiltonian by designing the evolution operators
- Optimal shortcut approach based on an easily obtained intermediate Hamiltonian
- Complete Bell-state analysis for superconducting-quantum-interference-device qubits with transitionless tracking algorithm
- Invariant-based inverse engineering for fluctuation transfer between membranes in an optomechanical cavity system
- Fast and robust quantum control for multimode interactions by using shortcuts to adiabaticity
- Adiabatic following of terahertz surface plasmon-polaritons based on tri-layered corrugated thin film coupler
- Analytic Design of Accelerated Adiabatic Gates in Realistic Qubits: General Theory and Applications to Superconducting Circuits
- Longitudinal relaxation of a nitrogen-vacancy center in a spin bath by generalized cluster-correlation expansion method
- NV-Metamaterial: Tunable Quantum Hyperbolic Metamaterial Using Nitrogen-Vacancy Centers in Diamond
- Coherent control techniques in three-level quantum sensing
- Shortcuts to adiabaticity with general two-level non-Hermitian systems
- Optimal robust stimulated Raman exact passage by inverse optimization
- Optimal State Manipulation for a Two-Qubit System Driven by Coherent and Incoherent Controls
- Shortcuts to adiabaticity in non-Hermitian quantum systems without rotating-wave approximation
- Quantum state conversion in opto-electro-mechanical systems via shortcut to adiabaticity
- Dark State Polarizing a Nuclear Spin in the Vicinity of a Nitrogen-Vacancy Center
- High-efficiency three-party quantum key agreement protocol with quantum dense coding and Bell states
- Quantum Key Distribution with High Order Fibonacci-like Orbital Angular Momentum States
- Invariant-based pulse design for three-level systems without the rotating-wave approximation
- Entanglement concentration and purification of two-mode squeezed microwave photons in circuit QED
- Accelerating population transfer in a transmon qutrit via Shortcuts to adiabaticity
- Universal distributed quantum computing on superconducting qutrits with dark photons
- Optical nonreciprocity in rotating diamond with nitrogen-vacancy center
- Generalized speed and cost rate in transitionless quantum driving
- Coherent Control with User-Defined Passage
- Universal single-qubit non-adiabatic holonomic quantum gates in optomechanical system
- Efficient and robust chiral discrimination by invariant-based inverse engineering
- Robust population transfer of spin states by geometric formalism
- Shortcuts to adiabatic population inversion via time-rescaling: stability and thermodynamic cost
- Hyperparallel transistor, router and dynamic random access memory with unity fidelities
- Highly Efficient Creation and Detection of Ultracold Deeply-Bound Molecules via Chainwise Stimulated Raman Shortcut-to-Adiabatic Passage
- Explicit construction of nonadiabatic passages for stimulated Raman transitions
- Multiple multi-control unitary operations: implementation and applications
- Time optimal quantum state transfer in a fully-connected quantum computer
- Accelerating adiabatic quantum transfer for three-level -type structure systems via picture transformation
- Transitionless intra-cavity quantum state transfer in optomechanical systems
- Feasible superadiabatic-based shortcuts for fast generating 3D entanglement between two atoms
- Rapid Preparation of Rydberg Superatom W State Using Superadiabatic Techniques
- Universal quantum gates by nonadiabatic holonomic evolution for the surface electron
- Dressed-state scheme for a fast CNOT gate
- Quantum carpets from Gaussian sum theory
- Quantum Zeno effect in a nitrogen-vacancy center embedded in a spin bath