Optical manipulation of Berry phase in a solid-state spin qubit
arXiv:1507.08993 · doi:10.1038/nphoton.2015.278
Abstract
The phase relation between quantum states represents an essential resource for the storage and processing of quantum information. While quantum phases are commonly controlled dynamically by tuning energetic interactions, utilizing geometric phases that accumulate during cyclic evolution may offer superior robustness to noise. To date, demonstrations of geometric phase control in solid-state systems rely on microwave fields that have limited spatial resolution. Here, we demonstrate an all-optical method based on stimulated Raman adiabatic passage to accumulate a geometric phase, the Berry phase, in an individual nitrogen-vacancy (NV) center in diamond. Using diffraction-limited laser light, we guide the NV center's spin along loops on the Bloch sphere to enclose arbitrary Berry phase and characterize these trajectories through time-resolved state tomography. We investigate the limits of this control due to loss of adiabiaticity and decoherence, as well as its robustness to noise intentionally introduced into the experimental control parameters, finding its resilience to be independent of the amount of Berry phase enclosed. These techniques set the foundation for optical geometric manipulation in future implementations of photonic networks of solid state qubits linked and controlled by light.
18 pages, 5 figures
References in corpus (14)
- High-fidelity projective readout of a solid-state spin quantum register
- Coherent control of single spins in silicon carbide at room temperature
- Unconditional quantum teleportation between distant solid-state qubits
- Isolated electron spins in silicon carbide with millisecond-coherence times
- Observation of Berry's Phase in a Solid State Qubit
- Experimental Realization of Universal Geometric Quantum Gates with Solid-State Spins
- Chip-scale nanofabrication of single spins and spin arrays in diamond
- All-optical initialization, readout, and coherent preparation of single silicon-vacancy spins in diamond
- Coherent Population Trapping of Single Spins in Diamond Under Optical Excitation
- Deterministic coupling of a single silicon-vacancy color center to a photonic crystal cavity in diamond
- All-optical formation of coherent dark states of silicon-vacancy spins in diamond
- Environment-assisted quantum control of a solid-state spin via coherent dark states
- Geometric phase gates based on stimulated Raman adiabatic passage in tripod systems
- All-optical preparation of coherent dark states of a single rare earth ion spin in a crystal
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- Investigation of the Aharonov-Bohm and Aharonov-Casher Topological Phases for Quantum Entangled States in 2+1 Dimensions
- The Berry phase from the entanglement of future and past light cones: detecting the timelike Unruh effect
- Stimulated Raman Adiabatic control of a nuclear spin in diamond
- Decoherence-Suppressed Non-adiabatic Holonomic Quantum Computation
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- Scalable nonadiabatic holonomic quantum computation on a superconducting qubit lattice
- Optical and spin properties of a single praseodymium ion in a crystal
- Evolution Operator Can Always be Separated into the Product of Holonomy and Dynamic Operators
- Optimization of STIRAP-based state transfer under dissipation
- Universal single-qubit non-adiabatic holonomic quantum gates in optomechanical system
- Quantum state transfer between valley and photon qubits
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- Interplay between geometric and dynamic phases in a single spin system
- Tutorial: From Topology to Hall Effects -- Implications of Berry Phase Physics
- Effective Hamiltonian theory of the geometric evolution of quantum systems
- Qubit guidelines for solid-state spin defects
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- The geometric phase of Z- and T-symmetric nanomagnets as a classification toolkit
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- Robust switching of superposition-states via a coherent double stimulated Raman adiabatic passage
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