The implementation of a classical control infrastructure for large-scale quantum computers is challenging due to the need for integration and processing time, which is constrained by coherence time. We propose a cryogenic reconfigurable platform as the heart of the control infrastructure implementing the digital error-correction control loop. The platform is implemented on a field-programmable gate array (FPGA) that supports the functionality required by several qubit technologies and that can operate close to the physical qubits over a temperature range from 4 K to 300 K. This work focuses on the extensive characterization of the electronic platform over this temperature range. All major FPGA building blocks (such as look-up tables (LUTs),...
Quantum computers hold the promise to solve some of the most complex problems of today. The core of ...
A fault-tolerant quantum computer with millions of quantum bits (qubits) requires massive yet very p...
Quantum computing holds the promise to achieve unprecedented computation power and to solve problems...
The implementation of a classical control infrastructure for large-scale quantum computers is challe...
The implementation of a classical control infrastructure for large-scale quantum computers is challe...
The implementation of a classical control infrastructure for large-scale quantum computers is challe...
The implementation of a classical control infrastructure for large-scale quantum computers is challe...
The implementation of a classical control infrastructure for large-scale quantum computers is challe...
Quantum computing promises an exponential speed-up of computation compared to what is nowadays achie...
Quantum computing promises an exponential speed-up of computation compared to what is nowadays achie...
Quantum computation has been a major focus of research in the past two decades, with recent experime...
In this paper, we provide a system level perspective on the design of control electronics for large ...
Recent advances in solid-state qubit technology are paving the way to fault-tolerant quantum computi...
A fault-tolerant quantum computer with millions of quantum bits (qubits) requires massive yet very p...
A fault-tolerant quantum computer with millions of quantum bits (qubits) requires massive yet very p...
Quantum computers hold the promise to solve some of the most complex problems of today. The core of ...
A fault-tolerant quantum computer with millions of quantum bits (qubits) requires massive yet very p...
Quantum computing holds the promise to achieve unprecedented computation power and to solve problems...
The implementation of a classical control infrastructure for large-scale quantum computers is challe...
The implementation of a classical control infrastructure for large-scale quantum computers is challe...
The implementation of a classical control infrastructure for large-scale quantum computers is challe...
The implementation of a classical control infrastructure for large-scale quantum computers is challe...
The implementation of a classical control infrastructure for large-scale quantum computers is challe...
Quantum computing promises an exponential speed-up of computation compared to what is nowadays achie...
Quantum computing promises an exponential speed-up of computation compared to what is nowadays achie...
Quantum computation has been a major focus of research in the past two decades, with recent experime...
In this paper, we provide a system level perspective on the design of control electronics for large ...
Recent advances in solid-state qubit technology are paving the way to fault-tolerant quantum computi...
A fault-tolerant quantum computer with millions of quantum bits (qubits) requires massive yet very p...
A fault-tolerant quantum computer with millions of quantum bits (qubits) requires massive yet very p...
Quantum computers hold the promise to solve some of the most complex problems of today. The core of ...
A fault-tolerant quantum computer with millions of quantum bits (qubits) requires massive yet very p...
Quantum computing holds the promise to achieve unprecedented computation power and to solve problems...