In optimal quantum control (OQC), a target quantum state of matter is achieved by tailoring the phase and amplitude of the control Hamiltonian through femtosecond pulse-shaping techniques and powerful adaptive feedback algorithms. Motivated by recent applications of OQC in quantum information science as an approach to optimizing quantum gates in atomic and molecular systems, here we report the experimental implementation of OQC in a solid-state system consisting of distinguishable semiconductor quantum dots. We demonstrate simultaneous high-fidelity π and 2π single qubit gates in two different quantum dots using a single engineered infrared femtosecond pulse. These experiments enhance the scalability of semiconductor-based quantum hardware ...
Optimal control can be used to significantly improve multi-qubit gates in quantum information proces...
We present theory and calculations for coherent high-fidelity quantum control of many-particle state...
New technologies based on the properties of quantum mechanics promise to revolutionise the way info...
In optimal quantum control (OQC), a target quantum state of matter is achieved by tailoring the phas...
In optimal quantum control (OQC), a target quantum state of matter is achieved by tailoring the phas...
In optimal quantum control (OQC), a target quantum state of matter is achieved by tailoring the phas...
Pulse shaping techniques are used to demonstrate quantum control of exciton qubits in InAs quantum d...
Simultaneous control of exciton qubits in two distinguishable InAs semiconductor quantum dots with e...
We apply quantum optimal control theory to establish a local voltage-control scheme that operates in...
Quantum Optics and Solid State, 18-19 January 2021, virtual conference. -- Book of abstracs 43 p. --...
We propose two schemes to coherently transfer arbitrary quantum states of the two-electron singlet-t...
In this work we present a model qubit whose basis states are eigenstates of a multilayered quantum ...
In the present study, we review the one-qubit dynamics and we offer a new unifying interpretation of...
Spin qubits in quantum dots define an attractive platform for quantum information because of their c...
We present novel models of quantum gates based on coupled quantum dots in which a qubit is regarded ...
Optimal control can be used to significantly improve multi-qubit gates in quantum information proces...
We present theory and calculations for coherent high-fidelity quantum control of many-particle state...
New technologies based on the properties of quantum mechanics promise to revolutionise the way info...
In optimal quantum control (OQC), a target quantum state of matter is achieved by tailoring the phas...
In optimal quantum control (OQC), a target quantum state of matter is achieved by tailoring the phas...
In optimal quantum control (OQC), a target quantum state of matter is achieved by tailoring the phas...
Pulse shaping techniques are used to demonstrate quantum control of exciton qubits in InAs quantum d...
Simultaneous control of exciton qubits in two distinguishable InAs semiconductor quantum dots with e...
We apply quantum optimal control theory to establish a local voltage-control scheme that operates in...
Quantum Optics and Solid State, 18-19 January 2021, virtual conference. -- Book of abstracs 43 p. --...
We propose two schemes to coherently transfer arbitrary quantum states of the two-electron singlet-t...
In this work we present a model qubit whose basis states are eigenstates of a multilayered quantum ...
In the present study, we review the one-qubit dynamics and we offer a new unifying interpretation of...
Spin qubits in quantum dots define an attractive platform for quantum information because of their c...
We present novel models of quantum gates based on coupled quantum dots in which a qubit is regarded ...
Optimal control can be used to significantly improve multi-qubit gates in quantum information proces...
We present theory and calculations for coherent high-fidelity quantum control of many-particle state...
New technologies based on the properties of quantum mechanics promise to revolutionise the way info...