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How to prove the Maxwell conjecture via spatial coupling - A proof of concept., , and . ISIT, page 458-462. IEEE, (2012)The capacity of low-density parity-check codes under message-passing decoding., and . IEEE Trans. Information Theory, 47 (2): 599-618 (2001)Bilinear time-frequency representations of signals: the shift-scale invariant class., and . IEEE Trans. Signal Processing, 42 (2): 357-366 (1994)A counterexample to a Voronoi region conjecture., and . IEEE Trans. Information Theory, 41 (4): 1195-1196 (1995)Rate-splitting multiple access for discrete memoryless channels., , , and . IEEE Trans. Information Theory, 47 (3): 873-890 (2001)Finite-Length Scaling for Iteratively Decoded LDPC Ensembles., , , and . IEEE Trans. Information Theory, 55 (2): 473-498 (2009)A Scaling Law to Predict the Finite-Length Performance of Spatially-Coupled LDPC Codes., and . IEEE Trans. Information Theory, 61 (6): 3164-3184 (2015)On wide-band broadcast channels., , and . IEEE Trans. Information Theory, 49 (12): 3250-3258 (2003)Finite-length analysis of low-density parity-check codes on the binary erasure channel., , , , and . IEEE Trans. Information Theory, 48 (6): 1570-1579 (2002)Displacement Convexity in Spatially Coupled Scalar Recursions., , , and . IEEE Trans. Information Theory, 65 (1): 604-621 (2019)