Research 04

Quantum And Photonic Compilation, Simulation, And Performance

Circuit libraries and simulator paths are expanded and measured against named local baselines.

FieldQuantum and photonic compiler/simulator research
Measured or implemented

What it is

This research focuses on compiling and simulating quantum or photonic-style circuits, then improving the local execution path for those models.

How it is researched

The lab expands circuit libraries, reruns the same tasks through improved simulator paths, tracks overhead reduction, and records where the result is only a simulation/model claim.

Why it matters

It demonstrates the ability to build and improve technical tooling around advanced circuit research while keeping hardware claims separate.

Evidence

  • QC0-QC30: 31 circuit set, 2.58x expansion from the early QC0-QC11 library.
  • 4-atom task: 71.55 ms to 10.36 ms, 6.91x in the local simulator path.
  • QSDK overhead reduced by 61.2x; 2-atom simulator path recorded at 17.4x.
  • D=8x8 projection reports 64x throughput in the modeled path.
External reading

Difference

The result is framed as simulator/model acceleration and mapping depth, not hardware dominance.

Boundary

External Pulser, QuTiP, QuEra, and Pasqal-style matched reproduction records remain required.