
David Meyer
· ProfessorUniversity of California, San Diego · Mathematics
Active 1976–2025
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About
David Meyer is a professor in the Department of Mathematics at the University of California, San Diego. He earned his Ph.D. in Mathematics from the Massachusetts Institute of Technology in 1989. His research areas include Mathematical Physics and Quantum Computation. He is involved in various departmental activities and contributes to the academic community through his expertise in these fields.
Research topics
- Artificial Intelligence
- Natural Language Processing
- Computer Science
- Machine Learning
- Programming language
- Physics
- Quantum mechanics
- Statistics
- Mathematics
Selected publications
2020 · 125 citations
1st authorCorrespondingVisualizing Categorical Data [R package vcd version 1.4-8]
2020 · 64 citations
1st authorCorrespondingSymmetric three-qubit-state invariants
Physical review. A/Physical review, A · 2017-12-08 · 9 citations
articleOpen accessSenior authorFor pure symmetric three-qubit states there are only three algebraically independent entanglement measures; one choice is the pairwise concurrence $\mathcal{C}$, the three-tangle $\ensuremath{\tau}$, and the Kempe invariant $\ensuremath{\kappa}$. Using a canonical form for symmetric $n$-qubit states derived from their Majorana representation, we derive the explicit achievable region of triples $(\mathcal{C},\ensuremath{\tau},\ensuremath{\kappa})$.
Creating Data Tool Kits That Everyone Can Use
Eos · 2020-05-11 · 5 citations
articleOpen accessSenior authorEarth scientists outline challenges to making the growing wealth of available data more accessible and to using data services for interdisciplinary research and applications.
Pairwise concurrence in cyclically symmetric quantum states
Physical review. A/Physical review, A · 2019-10-22 · 4 citations
articleOpen accessSenior authorWe provide an initial characterization of pairwise concurrence in quantum states which are invariant under cyclic permutations of party labeling. We prove that maximal entanglement can be entirely described by adjacent pairs, then give explicit descriptions of those states in specific subsets of four- and five-qubit states (X states). We also construct a monogamy bound on shared concurrences in the same subsets in four and five qubits, finding that above nonmaximal entanglement thresholds, no ot…
Recent grants
NSF · $125k · 2009–2012
Collaborative: Systems for Quantum Learning: Perceptrons and Networks
NSF · $438k · 2002–2007
Constraints on Multiparticle Entanglement
NSF · $210k · 2016–2022
Frequent coauthors
- 51 shared
R. F. Casten
Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering
- 49 shared
G. Gürdal
Argonne National Laboratory
- 45 shared
E. A. McCutchan
Brookhaven National Laboratory
- 41 shared
C. W. Beausang
University of Richmond
- 36 shared
N. V. Zamfir
- 34 shared
A. Heinz
- 33 shared
Kurt Hornik
- 33 shared
J. J. Ressler
Lawrence Livermore National Laboratory
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