Reliable quantum information processing requires high-fidelity universal manipulation of quantum systems within the characteristic coherence times. Non-adiabatic holonomic quantum computation offers a promising approach to implement fast, universal, and robust quantum logic gates particularly useful in nano-fabricated solid-state architectures, which typically have short coherence times. Here, we propose an experimentally feasible scheme to realize high-speed universal geometric quantum gates in nano-engineered pseudo-spin charge qubits. We use a system of three coupled quantum dots containing a single electron, where two computational states of a double quantum dot charge qubit interact through an intermediate quantum dot. The additional d...
We propose a universal quantum computing scheme in which the orthogonal qubit states |0i and |1> are...
Geometric phases and holonomies are a promising resource for the realization of high-fidelity quantu...
We show how single quantum dots, each hosting a singlet-triplet qubit, can be placed in arrays to bu...
We report coherent operation of a singlet-triplet qubit controlled by the spatial arrangement of two...
A practical quantum computer must be capable of performing high fidelity quantum gates on a set of q...
A practical quantum computer must be capable of performing high fidelity quantum gates on a set of q...
A practical quantum computer must be capable of performing high fidelity quantum gates on a set of q...
Abstract. We investigate a two-electron double quantum dot with both spin and valley degrees of free...
One of the major challenges hindering advancement of quantum computing is the sensitive nature of th...
Universal multiple-qubit gates can be implemented by a set of universal single-qubit gates and any o...
We report coherent operation of a singlet-triplet qubit controlled by the spatial arrangement of two...
We develop a non-adiabatic generalization of holonomic quantum computation in which high-speed unive...
We report coherent operation of a singlet-triplet qubit controlled by the spatial arrangement of two...
We report coherent operation of a singlet-triplet qubit controlled by the spatial arrangement of two...
We propose a universal quantum computing scheme in which the orthogonal qubit states |0i and |1> are...
We propose a universal quantum computing scheme in which the orthogonal qubit states |0i and |1> are...
Geometric phases and holonomies are a promising resource for the realization of high-fidelity quantu...
We show how single quantum dots, each hosting a singlet-triplet qubit, can be placed in arrays to bu...
We report coherent operation of a singlet-triplet qubit controlled by the spatial arrangement of two...
A practical quantum computer must be capable of performing high fidelity quantum gates on a set of q...
A practical quantum computer must be capable of performing high fidelity quantum gates on a set of q...
A practical quantum computer must be capable of performing high fidelity quantum gates on a set of q...
Abstract. We investigate a two-electron double quantum dot with both spin and valley degrees of free...
One of the major challenges hindering advancement of quantum computing is the sensitive nature of th...
Universal multiple-qubit gates can be implemented by a set of universal single-qubit gates and any o...
We report coherent operation of a singlet-triplet qubit controlled by the spatial arrangement of two...
We develop a non-adiabatic generalization of holonomic quantum computation in which high-speed unive...
We report coherent operation of a singlet-triplet qubit controlled by the spatial arrangement of two...
We report coherent operation of a singlet-triplet qubit controlled by the spatial arrangement of two...
We propose a universal quantum computing scheme in which the orthogonal qubit states |0i and |1> are...
We propose a universal quantum computing scheme in which the orthogonal qubit states |0i and |1> are...
Geometric phases and holonomies are a promising resource for the realization of high-fidelity quantu...
We show how single quantum dots, each hosting a singlet-triplet qubit, can be placed in arrays to bu...