$$ % Dirac notation \newcommand{\ket}[1]{\left|#1\right\rangle} \newcommand{\bra}[1]{\left\langle#1\right|} \newcommand{\braket}[2]{\left\langle#1\middle|#2\right\rangle} \newcommand{\expect}[1]{\left\langle#1\right\rangle} % Common operators \newcommand{\tr}{\operatorname{tr}} \newcommand{\Tr}{\operatorname{Tr}} \DeclareMathOperator*{\argmin}{arg\,min} \DeclareMathOperator*{\argmax}{arg\,max} % Complexity \newcommand{\bigO}[1]{\mathcal{O}\!\left(#1\right)} $$
Phase Kickback

Self-contained walkthroughs of quantum computing papers — with intuitive explanations, concrete examples, and interactive notebooks.

Quantum Computing · Compilation · Distributed QC 3 papers ↓
Velocity-Enabled Quantum Computing with Neutral Atoms
Mar 2026 Quantum Computing
CZ gates at 99.86% fidelity using atom velocity as a spectroscopic address — no individual addressing required.
Doppler Explorer [[4,2,2]] Code
Chipmunq: A Fault-Tolerant Compiler for Chiplet Quantum Architectures
Mar 2026 Compilation
The first hardware-aware compiler for chiplet backends — 13.5× speedup and up to 100× better logical error rates.
DAScut: Density-and-Structure-Aware Circuit Cutting
Feb 2026 Distributed QC
Circuit cutting that exploits interaction density and reuses isomorphic sub-circuits — up to 97% deduplication.

phase kickback · 2026

 

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