SQ-CARS: A Scalable Quantum Control and Readout System
Ujjawal Singhal, Shantharam Kalipatnapu, Pradeep Kumar Gautam, Sourav, Majumder, Vaibhav Venkata Lakshmi Pabbisetty, Srivatsava Jandhyala, Vibhor, Singh, and Chetan Singh Thakur

TL;DR
SQ-CARS is a scalable, user-friendly quantum control and readout system for superconducting qubits, enabling multi-qubit operations, direct microwave synthesis, and low-latency feedback through an integrated Python framework.
Contribution
It introduces a scalable, configurable, and phase-synchronized system based on ZCU111 for efficient quantum control and readout, with direct microwave pulse synthesis and on-board data processing.
Findings
Successful multi-qubit control demonstrated
Effective direct microwave synthesis from 4 to 9 GHz
Low-latency active feedback validated
Abstract
Qubits are the basic building blocks of a quantum processor which require electromagnetic pulses in giga hertz frequency range and latency in nanoseconds for control and readout. In this paper, we address three main challenges associated with room temperature electronics used for controlling and measuring superconducting qubits: scalability, direct microwave synthesis, and a unified user interface. To tackle these challenges, we have developed SQ-CARS, a system based on the ZCU111 evaluation kit. SQ-CARS is designed to be scalable, configurable, and phase synchronized, providing multi-qubit control and readout capabilities. The system offers an interactive Python framework, making it user-friendly. Scalability to a larger number of qubits is achieved by deterministic synchronization of multiple channels. The system supports direct synthesis of arbitrary vector microwave pulses using the…
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Taxonomy
TopicsQuantum Information and Cryptography · Quantum Computing Algorithms and Architecture · Quantum and electron transport phenomena
