Preparation of quantum states of two spin- particles in the form of the Schmidt decomposition
arXiv:1404.2150 · doi:10.1016/j.physleta.2014.03.045
Abstract
We consider a system of two spins that are coupled via an isotropic Heisenberg Hamiltonian. For the first time, a two-step method for the preparation of an arbitrary quantum state of two qubits in the form of the Schmidt decomposition is proposed. The simplified version of this method is applied to the physical system of an atom having with a nuclear spin and one valence electron. As an example, the preparation of two-spin quantum states in the P system is considered.
accepted by Phys Lett A
References in corpus (9)
- Coupling Superconducting Qubits via a Cavity Bus
- Driven coherent oscillations of a single electron spin in a quantum dot
- Coherent control of a single electron spin with electric fields
- Solid state quantum memory using the 31P nuclear spin
- Room temperature quantum bit storage exceeding 39 minutes using ionized donors in 28-silicon
- Electrical detection of 31P spin quantum states
- Electrical detection of spin echoes for phosphorus donors in silicon
- Long spin coherence in silicon with an electrical spin trap readout
- Fidelity Between Unitary Operators and the Generation of Gates Robust Against Off-Resonance Perturbations