Deterministic quantum state transfer between remote qubits in cavities
arXiv:1704.06233 · doi:10.1088/2058-9565/aa868b
Abstract
Performing a faithful transfer of an unknown quantum state is a key challenge for enabling quantum networks. The realization of networks with a small number of quantum links is now actively pursued, which calls for an assessment of different state transfer methods to guide future design decisions. Here, we theoretically investigate quantum state transfer between two distant qubits, each in a cavity, connected by a waveguide, e.g., an optical fiber. We evaluate the achievable success probabilities of state transfer for two different protocols: standard wave packet shaping and adiabatic passage. The main loss sources are transmission losses in the waveguide and absorption losses in the cavities. While special cases studied in the literature indicate that adiabatic passages may be beneficial in this context, it remained an open question under which conditions this is the case and whether their use will be advantageous in practice. We answer these questions by providing a full analysis, showing that state transfer by adiabatic passage -- in contrast to wave packet shaping -- can mitigate the effects of undesired cavity losses, far beyond the regime of coupling to a single waveguide mode and the regime of lossless waveguides, as was proposed so far. Furthermore, we show that the photon arrival probability is in fact bounded in a trade-off between losses due to non-adiabaticity and due to coupling to off-resonant waveguide modes. We clarify that neither protocol can avoid transmission losses and discuss how the cavity parameters should be chosen to achieve an optimal state transfer.
20 pages, 11 figures, advanced online publication in Quantum Science and Technology (2017)
References in corpus (24)
- The Quantum Internet
- Quantum nature of a strongly-coupled single quantum dot-cavity system
- Secure Quantum Key Distribution
- An Elementary Quantum Network of Single Atoms in Optical Cavities
- Single-Photon Switching and Entanglement of Solid-State Qubits in an Integrated Nanophotonic System
- Strong atom-field coupling for Bose-Einstein condensates in an optical cavity on a chip
- Unconditional quantum teleportation between distant solid-state qubits
- Quantum Teleportation Between Distant Matter Qubits
- Quantum information transfer using photons
- Distributed quantum computation via optical fibres
- Fiber Fabry-Perot cavity with high finesse
- Reversible state transfer between light and a single trapped atom
- Efficient Teleportation between Remote Single-Atom Quantum Memories
- Tunable ion-photon entanglement in an optical cavity
- Photon storage in Lambda-type optically dense atomic media. I. Cavity model
- Multiatom and resonant interaction scheme for quantum state transfer and logical gates between two remote cavities via an optical fiber
- Efficient Distributed Quantum Computing
- Deterministic coupling of a single silicon-vacancy color center to a photonic crystal cavity in diamond
- Quantum State Transfer via Noisy Photonic and Phononic Waveguides
- Schrodinger's catapult: Launching multiphoton quantum states from a microwave cavity memory
- Fast and noise-resistant implementation of quantum phase gates and creation of quantum entangled states
- Intracity quantum communication via thermal microwave networks
- Loading of large ion Coulomb crystals into a linear Paul trap incorporating an optical cavity for cavity QED studies
- Photon emission and absorption of a single ion coupled to an optical fiber-cavity
Cited by in corpus (18)
- Analysis of Multipartite Entanglement Distribution using a Central Quantum-Network Node
- Remote entanglement via adiabatic passage using a tunably-dissipative quantum communication system
- A review on quantum information processing in cavities
- Ion trap architectures and new directions
- Long-Range Interaction via Resonator-Induced Phase in Superconducting Qubits
- Quantum transfer of interacting qubits
- Photonic temporal-mode multiplexing by quantum frequency conversion in a dichroic-finesse cavity
- Multiplexed quantum state transfer in waveguides
- Deterministic quantum state transfer between remote atoms with photon-number superposition states
- Emergence of chaos and controlled photon transfer in a cavity-QED network
- On-demand shaped photon emission based on a parametrically modulated qubit
- Improving quantum state transfer: Correcting non-Markovian and distortion effects
- Quantum signatures of chaos in a cavity-QED-based stimulated Raman adiabatic passage
- Accelerated Gaussian quantum state transfer between two remote mechanical resonators
- Direct measurement of atomic entanglement via cavity photon statistics
- Universal deterministic quantum operations in microwave quantum links
- Exact solution of a family of staggered Heisenberg chains with conclusive pretty good quantum state transfer
- Transfer of quantum-enhanced information through a many-body system