Quantum computers can potentially provide an unprecedented speed-up with respect to traditional computers. However, a significant increase in the number of quantum bits (qubits) and their performance is required to demonstrate such quantum supremacy. While scaling up the underlying quantum processor is extremely challenging, building the electronics required to interface such large-scale processor is just as relevant and arduous. This paper discusses the challenges in designing a scalable electronic interface for quantum processors. To that end, we discuss the requirements dictated by different qubit technologies and present existing implementations of the electronic interface. The limitations in scaling up such state-of-the-art implementat...
The most promising quantum algorithms require quantum processors that host millions of quantum bits ...
Quantum computing promises an exponentially higher computational power than classical computers; alt...
Quantum computers have been heralded as a novel paradigm for the solution of today's intractable pro...
Quantum computers can potentially provide an unprecedented speed-up with respect to traditional comp...
Quantum computers can potentially provide an unprecedented speed-up with respect to traditional comp...
Quantum computers have gained widespread interest as they can potentially solve problems that are in...
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 computers1 could revolutionize computing in a profound way due to the massive speedup they p...
Quantum computers hold the promise to solve some of the most complex problems of today. The core of ...
Cryogenic CMOS (cryo-CMOS) is a viable technology for the control interface of the large-scale quant...
Cryogenic CMOS (cryo-CMOS) is a viable technology for the control interface of the large-scale quant...
Recent advances in solid-state qubit technology are paving the way to fault-tolerant quantum computi...
Quantum computation has been a major focus of research in the past two decades, with recent experime...
The implementation of a classical control infrastructure for large-scale quantum computers is challe...
The most promising quantum algorithms require quantum processors that host millions of quantum bits ...
Quantum computing promises an exponentially higher computational power than classical computers; alt...
Quantum computers have been heralded as a novel paradigm for the solution of today's intractable pro...
Quantum computers can potentially provide an unprecedented speed-up with respect to traditional comp...
Quantum computers can potentially provide an unprecedented speed-up with respect to traditional comp...
Quantum computers have gained widespread interest as they can potentially solve problems that are in...
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 computers1 could revolutionize computing in a profound way due to the massive speedup they p...
Quantum computers hold the promise to solve some of the most complex problems of today. The core of ...
Cryogenic CMOS (cryo-CMOS) is a viable technology for the control interface of the large-scale quant...
Cryogenic CMOS (cryo-CMOS) is a viable technology for the control interface of the large-scale quant...
Recent advances in solid-state qubit technology are paving the way to fault-tolerant quantum computi...
Quantum computation has been a major focus of research in the past two decades, with recent experime...
The implementation of a classical control infrastructure for large-scale quantum computers is challe...
The most promising quantum algorithms require quantum processors that host millions of quantum bits ...
Quantum computing promises an exponentially higher computational power than classical computers; alt...
Quantum computers have been heralded as a novel paradigm for the solution of today's intractable pro...