A 22nm FD-SOI-CMOS Scalable Quantum Processor SoC with Fully Integrated Control Electronics at 3.5K
ORAL
Abstract
Silicon based Qubits have been proposed as an alternative to Josephson junction structures when it comes to scaling the quantum processor from hundreds to a thousand Qubits. The control electronics in such system needs to generate a unique RF control and DC bias per Qubit without exceeding the thermal budget of the cryocooler. This paper describes a monolithic integration of the semiconductor quantum core and its associated classic control circuitry manufactured in the 22FDX fully depleted silicon-on-insulator (FD-SOI) technology from GlobalFoundries. The quantum control signal is synthesized from a single RF reference clock that drives the pulse generator for timing control and the 8bit capacitive DAC for amplitude control. The on-chip cryogenic memory stores unique patterns to generate various quantum gate behaviors. The readout circuits use a sampled architecture designed to reduce the common-mode and flicker noise in the front-end. In addition, a fully integrated bias generation system using a single input reference is proposed for a moderately complex 2D quantum structure. The combined area of the entire control circuitry is 0.042mm2 while the total power consumption with a reference clock 2.5GHz is 10.7mW at 3.5K.
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Presenters
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IMRAN BASHIR
Design, Equal1 Labs Inc.
Authors
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IMRAN BASHIR
Design, Equal1 Labs Inc.
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Dirk R Leipold
Design, Equal1 Labs Inc.
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Mike Asker
Design, Equal1 Labs Inc.
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Elena Blokhina
Design, Equal1 Labs Inc.
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David Redmond
Design, Equal1 Labs Inc.
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Bogdan Staszewski
Univ Coll Dublin
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Ali Esmailiyan
Design, Equal1 Labs Inc.
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Panagiotis Giounanlis
Design, Equal1 Labs Inc.
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Dennis Andrademiceli
Univ Coll Dublin
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Andrii Sokolov
Univ Coll Dublin
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Xutong Wu
Univ Coll Dublin