Identifying Quantum Correlations Using Explicit SO(3) to SU(2) Maps
- URL: http://arxiv.org/abs/2205.02989v2
- Date: Thu, 16 Jun 2022 22:54:47 GMT
- Title: Identifying Quantum Correlations Using Explicit SO(3) to SU(2) Maps
- Authors: Daniel Dilley and Alvin Gonzales and Mark Byrd
- Abstract summary: An exact formula is given for determining the local unitaries for some given rotation on the Bloch sphere.
The solution allows for easy manipulation of two-qubit quantum states with a single definition that is programmable.
- Score: 2.578242050187029
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: Quantum state manipulation of two-qubits on the local systems by special
unitaries induces special orthogonal rotations on the Bloch spheres. An exact
formula is given for determining the local unitaries for some given rotation on
the Bloch sphere. The solution allows for easy manipulation of two-qubit
quantum states with a single definition that is programmable. With this
explicit formula, modifications to the correlation matrix are made simple.
Using our solution, it is possible to diagonalize the correlation matrix
without solving for the parameters in SU(2) that define the local unitary that
induces the special orthogonal rotation in SO(3). Since diagonalization of the
correlation matrix is equivalent to diagonalization of the interaction
Hamiltonian, manipulating the correlation matrix is important in time-optimal
control of a two-qubit state. The relationship between orthogonality conditions
on SU(2) and SO(3) are given and manipulating the correlation matrix when only
one qubit can be accessed is discussed.
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