We propose a mechanism for single- and double-qubit state manipulations in quantum computation with an inseparable double-qubit structure. The principle is based on manipulating the degeneracy of the four energy levels. The degeneracy of levels is allowed to be fourfold, doubly degenerate in pairs and nondegenerate, and these configurations are tuned by two coupling parameters. The quantum gate operations are performed at the nondegenerate whereas the data are stored in the degenerate configurations. The fact that the center of the four energy levels is invariant at all parameter values is exploited, and this particularly increases the performance of the controlled operations. A particular realization of the proposed mechanism is suggested ...
We present an approach to realize universal two-bit quantum gates using two SQUID flux qubits. In th...
While all quantum algorithms can be expressed in terms of single-qubit and two-qubit gates, more exp...
We present a theoretical analysis of the selective darkening method for implementing quantum control...
Universal quantum computing relies on high-fidelity entangling operations. Here, we demonstrate that...
The prospect of computational hardware with quantum advantage relies critically on the quality of qu...
We examine a generic three level mechanism of quantum computation in which all fundamental single an...
The project completed at the Wichita State University Department of Electrical and Computer Engineer...
The current status of solid-state implementations of quantum computing is brie®y described. There ar...
10 pages, 11 figures (incl. Supplementary Information)International audienceEntangling gates between...
We investigate an approach to universal quantum computation based on the modulation of longitudinal ...
We present a theoretical proposal for the implementation of geometric quantum computing based on a H...
Qubits (quantum bits) are what runs quantum computers, like a bit in classical computers. Quantum ga...
10 pages, 7 figuresKerr nonlinear oscillators driven by a two-photon process are promising systems t...
The concept of a quantum computer was invented in the beginning of the 1980s as a quantum generaliza...
One of the major challenges hindering advancement of quantum computing is the sensitive nature of th...
We present an approach to realize universal two-bit quantum gates using two SQUID flux qubits. In th...
While all quantum algorithms can be expressed in terms of single-qubit and two-qubit gates, more exp...
We present a theoretical analysis of the selective darkening method for implementing quantum control...
Universal quantum computing relies on high-fidelity entangling operations. Here, we demonstrate that...
The prospect of computational hardware with quantum advantage relies critically on the quality of qu...
We examine a generic three level mechanism of quantum computation in which all fundamental single an...
The project completed at the Wichita State University Department of Electrical and Computer Engineer...
The current status of solid-state implementations of quantum computing is brie®y described. There ar...
10 pages, 11 figures (incl. Supplementary Information)International audienceEntangling gates between...
We investigate an approach to universal quantum computation based on the modulation of longitudinal ...
We present a theoretical proposal for the implementation of geometric quantum computing based on a H...
Qubits (quantum bits) are what runs quantum computers, like a bit in classical computers. Quantum ga...
10 pages, 7 figuresKerr nonlinear oscillators driven by a two-photon process are promising systems t...
The concept of a quantum computer was invented in the beginning of the 1980s as a quantum generaliza...
One of the major challenges hindering advancement of quantum computing is the sensitive nature of th...
We present an approach to realize universal two-bit quantum gates using two SQUID flux qubits. In th...
While all quantum algorithms can be expressed in terms of single-qubit and two-qubit gates, more exp...
We present a theoretical analysis of the selective darkening method for implementing quantum control...