Multi-tone RFSoC driver for an AOM: Difference between revisions
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The FPGA prototype serves two purposes: it is a usable instrument in its own right, and it is the architectural and algorithmic testbench for a subsequent ASIC implementation depending on the outcome | The FPGA prototype serves two purposes: it is a usable instrument in its own right, and it is the architectural and algorithmic testbench for a subsequent ASIC implementation depending on the outcome | ||
== | == Background == | ||
== Methods == | == Methods == | ||
1) Include software packages, hardware resources | |||
== Results == | == Results == | ||
== Discussion | == Conclusion & Discussion == | ||
== References == | == References == | ||
Latest revision as of 07:03, 29 September 2026
Team member: Mani Aarthy
Objective
Design, implement, and characterise a multi-tone RF synthesiser on an RFSoC platform capable of driving AODs or AOMs used for trapped-ion and neutral-atom qubit control.
The synthesiser must support two operating modes on the same hardware:
1) Ion mode — few tones (1–4) per channel, optimised for phase purity and deterministic inter-tone phase relationships. 2) Atom mode — many tones (32–64) per channel, optimised for intermodulation suppression and linear frequency chirping.
The FPGA prototype serves two purposes: it is a usable instrument in its own right, and it is the architectural and algorithmic testbench for a subsequent ASIC implementation depending on the outcome
Background
Methods
1) Include software packages, hardware resources