Cryogenic silicon neuromorphic processor for quantum computing - CRYOPROC
Bidragets beskrivning
The booming field of quantum computing offers unprecedented exponential computational speedup. However, there are still a lot of challenges to realizing large-scale quantum computers. One of them is related to the ultra-low-power dissipation requirement for cryogenic electronics controlling quantum bits (qubits) and correcting their errors. Commercial nano-transistors dissipate too much power at low temperatures to be used for cryogenic electronics in a future quantum computer consisting of millions of qubits. Here we propose an alternative, non von Neuman processor architecture based on brain-neuron-mimicking artificial neural networks functioning down to 1 Kelvin (-272 Celsius). Fabricated within standard Si transistor technology, our cryo-neuromorphic processor offers fast and ultra-low-power computation capabilities to control large numbers of qubits. Moreover, it can be co-integrated with spin qubits on the same silicon chip, thus offering great scalability prospects.
Visa merStartår
2022
Slutår
2025
Beviljade finansiering
Finansiär
Finlands Akademi
Typ av finansiering
Forskardoktorer
Utlysning
Övriga uppgifter
Finansieringsbeslutets nummer
350325
Vetenskapsområden
Fysik
Forskningsområden
Tiiviin aineen fysiikka
Identifierade teman
quantum computing, quantum technology