Deterministic preparation of Dicke states of donor nuclear spins in silicon by cooperative pumping
arXiv:1109.5495 · doi:10.1103/PhysRevB.85.155304
Abstract
For donor nuclear spins in silicon, we show how to deterministically prepare various symmetric and asymmetric Dicke states which span a complete basis of the many-body Hilbert space. The state preparation is realized by cooperative pumping of nuclear spins by coupled donor electrons, and the required controls are in situ to the prototype Kane proposal for quantum computation. This scheme only requires a sub-gigahertz donor exchange coupling which can be readily achieved without atomically precise donor placement, hence it offers a practical way to prepare multipartite entanglement of spins in silicon with current technology. All desired Dicke states appear as the steady state under various pumping scenarios and therefore the preparation is robust and does not require accurate temporal controls. Numerical simulations with realistic parameters show that Dicke states of 10-20 qubits can be prepared with high fidelity in presence of decoherence and unwanted dynamics.
published version
References in corpus (17)
- Scalable multi-particle entanglement of trapped ions
- Solid state quantum memory using the 31P nuclear spin
- Experimental entanglement of a six-photon symmetric Dicke state
- Hyperfine-mediated gate-driven electron spin resonance
- Deterministic Dicke state preparation with continuous measurement and control
- Electrical detection of 31P spin quantum states
- Theory of electric dipole spin resonance in quantum dots: Mean field theory with Gaussian fluctuations and beyond
- Architecture for high-sensitivity single-shot readout and control of the electron spin of individual donors in silicon
- Generation of Symmetric Dicke States of Remote Qubits with Linear Optics
- Stark Tuning of Donor Electron Spins in Silicon
- Electrical detection of spin echoes for phosphorus donors in silicon
- Bismuth in silicon qubits: the role of EPR cancellation resonances
- Long spin coherence in silicon with an electrical spin trap readout
- Entanglement detection in the vicinity of arbitrary Dicke states
- Electrically-Driven Reverse Overhauser Pumping of Nuclear Spins in Quantum Dots
- Many-body singlets by dynamic spin polarization
- Generating coherent state of entangled spins
Cited by in corpus (5)
- Silicon quantum processor with robust long-distance qubit couplings
- Counterdiabatic driving in spin squeezing and Dicke state preparation
- Extreme spin squeezing in the steady state of a generalized Dicke model
- Protecting dissipative quantum state preparation via dynamical decoupling
- Symmetric quantum states: a review of recent progress