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Optimal 1—Spontaneous Emission Error Designs*
Authors:Junling Zhou  Zihong Tian
Institution:1. Institute of Mathematics, Beijing Jiaotong University, China;2. College of Mathematics and Information Science, Hebei Normal University, China
Abstract:A t‐spontaneous emission error design, denoted by turn:x-wiley:10638539:media:jcd21562:jcd21562-math-0001 SEED or t‐SEED in short, is a system urn:x-wiley:10638539:media:jcd21562:jcd21562-math-0002 of k‐subsets of a v‐set V with a partition urn:x-wiley:10638539:media:jcd21562:jcd21562-math-0003 of urn:x-wiley:10638539:media:jcd21562:jcd21562-math-0004 satisfying urn:x-wiley:10638539:media:jcd21562:jcd21562-math-0005 for any urn:x-wiley:10638539:media:jcd21562:jcd21562-math-0006 and urn:x-wiley:10638539:media:jcd21562:jcd21562-math-0007, urn:x-wiley:10638539:media:jcd21562:jcd21562-math-0008, where urn:x-wiley:10638539:media:jcd21562:jcd21562-math-0009 is a constant depending only on E. The design of t‐SEED was introduced by Beth et al. in 2003 (T. Beth, C. Charnes, M. Grassl, G. Alber, A. Delgado, M. Mussinger, Des Codes Cryptogr 29 (2003), 51–70) to construct quantum jump codes. The number m of designs in a turn:x-wiley:10638539:media:jcd21562:jcd21562-math-0010 SEED is called dimension, which corresponds to the number of orthogonal basis states in a quantum jump code. A t‐SEED is nondegenerate if every point appears in each of its member design. A nondegenerate t‐SEED is called optimal when it achieves the largest possible dimension. This paper investigates the dimension of optimal 1‐SEEDs, in which Baranyai's Lemma plays a significant role and the hypergraph distribution is closely related as well. Several classes of optimal 1‐SEEDs are shown to exist. In particular, we determine the exact dimensions of optimal 1‐urn:x-wiley:10638539:media:jcd21562:jcd21562-math-0011 SEEDs for all orders v and block sizes k with urn:x-wiley:10638539:media:jcd21562:jcd21562-math-0012.
Keywords:disjoint  hypergraph  quantum jump code  spontaneous emission error design  05B05  05C65
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