Tunneling-Augmented Simulated Annealing for Short-Block LDPC Code Construction

2026-04-10T08:51:46Zb95ff554c9443d0d5bcad5000c49e0b31758c5305e323b1df1cfd876f244137c
Bussgang-theoremHamming-bidistanceLDPCLLM-theoryLean-formalizationNewton-SchulzarXivbent-functionsbinary-asymmetric-channelbosonic-channelchannel-capacitycoding-theorycoloring-channelsfoundation-modelsgraph-neural-networksinformation-theoryjoint-communication-and-controlorthogonal-group-synchronizationpower-amplifierquantum-communicationself-dual-codesshort-block-codessimulated-annealingwireless-resource-allocation

What happened

Collection of new arXiv submissions (2026-04-10) in information theory, coding, and communications engineering. Highlights include: a tunneling-augmented simulated annealing method for short-block LDPC/parity-check design with demonstrated SNR gains; a new asymmetric Hamming bidistance for binary asymmetric channels and related error bounds; a unified analytical framework for joint communication-and-control trade-offs; a quantum integrated communication-and-computation scheme for bosonic MACs; capacity results for sequences of coloring channels; algebraic results on quadratic binomial vectoria

Why it matters

A reviewed impact interpretation has not been published for this record.

Evidence and limitations

Source ID
arxiv_math_it
Record identifier
b95ff554c9443d0d5bcad5000c49e0b31758c5305e323b1df1cfd876f244137c
Enrichment time
2026-04-10T08:51:46Z
AI-assisted enrichment
Yes

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