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Quantum Instrumentation Control Kit -- Defect Arbitrary Waveform Generator (QICK-DAWG): A Quantum Sensing Control Framework for Quantum Defects

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arxiv 2311.18253 v1 pith:K22IPM3E submitted 2023-11-30 quant-ph cond-mat.mes-hall

classification quant-phcond-mat.mes-hall
keywords quantumcontroldefectsinstrumentationqick-dawgbarrierfirmwareqick
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Quantum information communication, sensing, and computation often require complex and expensive instrumentation resulting in a large entry barrier. The Quantum Instrumentation Control Kit (QICK) overcomes this barrier for superconducting qubits with a collection of software and firmware for state-of-the-art radio frequency system on chip (RFSoC's) field programmable gate architecture (FPGA) chips. Here we present a software and firmware extension to QICK, the Quantum Instrumentation Control Kit - Defect Arbitrary Waveform Generator (QICK-DAWG), which is an open-source software and firmware package that supports full quantum control and measurement of nitrogen-vacancy defects in diamond and other quantum defects using RFSoC FPGAs. QICKDAWG extends QICK to the characterization of nitrogen-vacancy defects and other diamond quantum defects by implementing DC-1 GHz readout, AOM or gated laser control, and analog or photon counting readout options. QICK-DAWG also adds pulse sequence programs and data analysis scripts to collect and characterize photoluminescence (PL) intensity, optically detected magnetic resonance (ODMR) spectra, PL readout windows, Rabi oscillations, Ramsay interference spectra, Hahn echo spin-spin relaxation times T$_2$, and spin-lattice relaxation times T$_1$. We demonstrate that QICK-DAWG is a powerful new paradigm of open source quantum hardware that significantly lowers the entry barrier and cost for quantum sensing using quantum defects.

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Cited by 2 Pith papers

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  1. A Pulsed Live-Cell Quantum Microscope for Entangled Solid State and Biological Qubits

    quant-ph 2026-07 conditional novelty 6.5 of 10

    A galvo-scanned inverted microscope with dual-color nanosecond excitation, broadband microwave delivery, and single-photon timing enables simultaneous confocal imaging of NV nanodiamonds and MagLOV biological qubits i...

  2. Spin-State Selective Excitation in Spin Defects of Hexagonal Boron Nitride

    quant-ph 2025-06 conditional novelty 6.0 of 10

    Circularly polarized microwaves from a cross-shaped waveguide selectively drive the spin 0 to -1 or 0 to +1 transitions of boron vacancy defects in hBN, with an asymmetric magnetic field dependence.

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