We design a logical qubit consisting of a linear array of quantum dots, we analyze error correction for this linear architecture, and we propose a sequence of experiments to demonstrate components of the logical qubit on near-term devices. To avoid the difficulty of fully controlling a two-dimensional array of dots, we adapt spin control and error correction to a one-dimensional line of silicon quantum dots. Control speed and efficiency are maintained via a scheme in which electron spin states are controlled globally using broadband microwave pulses for magnetic resonance, while two-qubit gates are provided by local electrical control of the exchange interaction between neighboring dots. Error correction with two-, three-, and four-qubit co...
The fault-tolerant operation of logical qubits is an important requirement for realizing a universal...
The fault-tolerant operation of logical qubits is an important requirement for realizing a universal...
Now that it is possible to achieve measurement and control fidelities for individual quantum bits (q...
The spin states of single electrons in gate-defined quantum dots satisfy crucial requirements for a ...
The spin states of single electrons in gate-defined quantum dots satisfy crucial requirements for a ...
A quantum computer utilizes the laws of quantum mechanics and performs logic operations on quantum t...
A two-level quantum system is the building block of a quantum computer. This pair of quantum states ...
Quantum information processing in semiconductor quantum dots using single and multi-spin qubitsThe i...
Quantum information processing in semiconductor quantum dots using single and multi-spin qubitsThe i...
Copyright © 2018 The Authors. The spin states of single electrons in gate-defined quantum dots satis...
Now that it is possible to achieve measurement and control fidelities for individual quantum bits (q...
A design for a large-scale surface code quantum processor based on a node/network approach is introd...
Quantum computing could enable exponential speedups for certain classes of problems by exploiting su...
A design for a large-scale surface code quantum processor based on a node/network approach is introd...
The fault-tolerant operation of logical qubits is an important requirement for realizing a universal...
The fault-tolerant operation of logical qubits is an important requirement for realizing a universal...
The fault-tolerant operation of logical qubits is an important requirement for realizing a universal...
Now that it is possible to achieve measurement and control fidelities for individual quantum bits (q...
The spin states of single electrons in gate-defined quantum dots satisfy crucial requirements for a ...
The spin states of single electrons in gate-defined quantum dots satisfy crucial requirements for a ...
A quantum computer utilizes the laws of quantum mechanics and performs logic operations on quantum t...
A two-level quantum system is the building block of a quantum computer. This pair of quantum states ...
Quantum information processing in semiconductor quantum dots using single and multi-spin qubitsThe i...
Quantum information processing in semiconductor quantum dots using single and multi-spin qubitsThe i...
Copyright © 2018 The Authors. The spin states of single electrons in gate-defined quantum dots satis...
Now that it is possible to achieve measurement and control fidelities for individual quantum bits (q...
A design for a large-scale surface code quantum processor based on a node/network approach is introd...
Quantum computing could enable exponential speedups for certain classes of problems by exploiting su...
A design for a large-scale surface code quantum processor based on a node/network approach is introd...
The fault-tolerant operation of logical qubits is an important requirement for realizing a universal...
The fault-tolerant operation of logical qubits is an important requirement for realizing a universal...
The fault-tolerant operation of logical qubits is an important requirement for realizing a universal...
Now that it is possible to achieve measurement and control fidelities for individual quantum bits (q...