The concept of off-diagonal geometric phase (GP) has been introduced in order to recover interference information about the geometry of quantal evolution where the standard GPs are not well defined. In this letter, we propose a physical setting for realizing non-Abelian off-diagonal GPs. The proposed non-Abelian off-diagonal GPs can be implemented in a cyclic chain of four qubits with controllable nearest-neighbor interactions. Our proposal seems to be within reach in various nano-engineered systems and therefore opens up for the first experimental test of the non-Abelian off-diagonal GP
We illustrate a reverse Von Neumann measurement scheme in which a geometric phase induced on a quant...
We present a superconducting circuit in which non-Abelian geometric transformations can be realized ...
The use of a new class of geometric gates to implement geometric quantum computations (GQC) was disc...
If a quantum system evolves in a noncyclic fashion the corresponding geometric phase or holonomy may...
A different way to realize nonadiabatic geometric quantum computation is proposed by varying paramet...
We propose a new class of unconventional geometric gates involving nonzero dynamic phases, and eluci...
Geometric phases have stimulated researchers for its potential applications in many areas of science...
We explore a natural extension of the Abelian geometric phase factor in sequences of incomplete meas...
We investigate the adiabatic evolution of a set of nondegenerate eigenstates of a parametrized Hamil...
10.1103/PhysRevA.89.022117Physical Review A - Atomic, Molecular, and Optical Physics892-PLRA
To reach the error threshold required to successfully perform error-correcting algorithms in quantum...
Abstract Quantum technologies based on adiabatic techniques can be highly effective, but often at th...
We theoretically show that multiport photonic lattices emulating driven quantum harmonic oscillators...
We describe in detail a general strategy for implementing a conditional geometric phase between two ...
Geometric phases have been used in NMR to implement controlled phase shift gates for quantum-informa...
We illustrate a reverse Von Neumann measurement scheme in which a geometric phase induced on a quant...
We present a superconducting circuit in which non-Abelian geometric transformations can be realized ...
The use of a new class of geometric gates to implement geometric quantum computations (GQC) was disc...
If a quantum system evolves in a noncyclic fashion the corresponding geometric phase or holonomy may...
A different way to realize nonadiabatic geometric quantum computation is proposed by varying paramet...
We propose a new class of unconventional geometric gates involving nonzero dynamic phases, and eluci...
Geometric phases have stimulated researchers for its potential applications in many areas of science...
We explore a natural extension of the Abelian geometric phase factor in sequences of incomplete meas...
We investigate the adiabatic evolution of a set of nondegenerate eigenstates of a parametrized Hamil...
10.1103/PhysRevA.89.022117Physical Review A - Atomic, Molecular, and Optical Physics892-PLRA
To reach the error threshold required to successfully perform error-correcting algorithms in quantum...
Abstract Quantum technologies based on adiabatic techniques can be highly effective, but often at th...
We theoretically show that multiport photonic lattices emulating driven quantum harmonic oscillators...
We describe in detail a general strategy for implementing a conditional geometric phase between two ...
Geometric phases have been used in NMR to implement controlled phase shift gates for quantum-informa...
We illustrate a reverse Von Neumann measurement scheme in which a geometric phase induced on a quant...
We present a superconducting circuit in which non-Abelian geometric transformations can be realized ...
The use of a new class of geometric gates to implement geometric quantum computations (GQC) was disc...