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Terence Tao
Person information
- affiliation: University of California, Los Angeles, USA
- award (2006): Fields Medal
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2020 – today
- 2024
- [j35]Terence Tao:
Perfectly Packing a Square by Squares of Nearly Harmonic Sidelength. Discret. Comput. Geom. 71(4): 1178-1189 (2024) - 2023
- [j34]Rachel Greenfeld, Terence Tao:
Undecidable Translational Tilings with Only Two Tiles, or One Nonabelian Tile. Discret. Comput. Geom. 70(4): 1652-1706 (2023)
2010 – 2019
- 2018
- [j33]Terence Tao:
Some remarks on the lonely runner conjecture. Contributions Discret. Math. 13(2) (2018) - 2017
- [j32]Terence Tao, Van Vu:
Random matrices have simple spectrum. Comb. 37(3): 539-553 (2017) - [j31]Daniel Kane, Terence Tao:
A Bound on Partitioning Clusters. Electron. J. Comb. 24(2): 2 (2017) - 2015
- [j30]Terence Tao:
Expanding polynomials over finite fields of large characteristic, and a regularity lemma for definable sets. Contributions Discret. Math. 10(1) (2015) - 2014
- [j29]Terence Tao:
Every odd number greater than 1 is the sum of at most five primes. Math. Comput. 83(286): 997-1038 (2014) - 2013
- [j28]Ben Joseph Green, Terence Tao:
On Sets Defining Few Ordinary Lines. Discret. Comput. Geom. 50(2): 409-468 (2013) - [j27]Emmanuel Breuillard, Ben Green, Terence Tao:
A nilpotent Freiman dimension lemma. Eur. J. Comb. 34(8): 1287-1292 (2013) - [j26]Terence Tao:
Noncommutative sets of small doubling. Eur. J. Comb. 34(8): 1459-1465 (2013) - 2012
- [j25]Terence Tao, Van H. Vu:
The Littlewood-Offord problem in high dimensions and a conjecture of Frankl and Füredi. Comb. 32(3): 363-372 (2012) - [j24]József Solymosi, Terence Tao:
An Incidence Theorem in Higher Dimensions. Discret. Comput. Geom. 48(2): 255-280 (2012) - [j23]Terence Tao, Ernest Croot III, Harald Helfgott:
Deterministic methods to find primes. Math. Comput. 81(278): 1233-1246 (2012) - 2011
- [j22]Helge Holden, Kenneth H. Karlsen, Nils Henrik Risebro, Terence Tao:
Operator splitting for the KdV equation. Math. Comput. 80(274): 821-846 (2011) - 2010
- [j21]Terence Tao:
Freiman's theorem for solvable groups. Contributions Discret. Math. 5(2) (2010) - [j20]Terence Tao:
Sumset and Inverse Sumset Theory for Shannon Entropy. Comb. Probab. Comput. 19(4): 603-639 (2010) - [j19]Terence Tao, Van H. Vu:
Smooth analysis of the condition number and the least singular value. Math. Comput. 79(272): 2333-2352 (2010) - [j18]Tim Austin, Terence Tao:
Testability and repair of hereditary hypergraph properties. Random Struct. Algorithms 36(4): 373-463 (2010) - [j17]Terence Tao, Van H. Vu:
A sharp inverse Littlewood-Offord theorem. Random Struct. Algorithms 37(4): 525-539 (2010) - [j16]Emmanuel J. Candès, Terence Tao:
The power of convex relaxation: near-optimal matrix completion. IEEE Trans. Inf. Theory 56(5): 2053-2080 (2010)
2000 – 2009
- 2009
- [j15]Ben Joseph Green, Terence Tao:
The distribution of polynomials over finite fields, with applications to the Gowers norms. Contributions Discret. Math. 4(2) (2009) - [j14]Terence Tao:
The sum-product phenomenon in arbitrary rings. Contributions Discret. Math. 4(2) (2009) - [j13]Ben Green, Terence Tao:
Freiman's Theorem in Finite Fields via Extremal Set Theory. Comb. Probab. Comput. 18(3): 335-355 (2009) - [c5]Terence Tao, Van H. Vu:
Smooth Analysis of the Condition Number and the Least Singular Value. APPROX-RANDOM 2009: 714-737 - [i2]Emmanuel J. Candès, Terence Tao:
The Power of Convex Relaxation: Near-Optimal Matrix Completion. CoRR abs/0903.1476 (2009) - 2008
- [j12]Terence Tao:
Product set estimates for non-commutative groups. Comb. 28(5): 547-594 (2008) - 2007
- [b2]Terence Tao, Van H. Vu:
Additive combinatorics. Cambridge studies in advanced mathematics 105, Cambridge University Press 2007, ISBN 978-0-521-85386-6, pp. I-XVIII, 1-512 - [j11]Ben Joseph Green, Terence Tao:
Szemerédi's Theorem. Scholarpedia 2(7): 3446 (2007) - [c4]Terence Tao:
Structure and Randomness in Combinatorics. FOCS 2007: 3-15 - [c3]Van H. Vu, Terence Tao:
The condition number of a randomly perturbed matrix. STOC 2007: 248-255 - 2006
- [b1]Terence Tao:
Solving mathematical problems - a personal perspective. Oxford University Press 2006, ISBN 978-0-19-920560-8, pp. I-XII, 1-103 - [j10]Terence Tao:
Szemerédi's regularity lemma revisited. Contributions Discret. Math. 1(1) (2006) - [j9]Terence Tao:
A Quantitative Ergodic Theory Proof of Szemerédi's Theorem. Electron. J. Comb. 13(1) (2006) - [j8]Terence Tao:
A variant of the hypergraph removal lemma. J. Comb. Theory A 113(7): 1257-1280 (2006) - [j7]Terence Tao, Van H. Vu:
On random plus/minus 1 matrices: Singularity and determinant. Random Struct. Algorithms 28(1): 1-23 (2006) - [j6]Emmanuel J. Candès, Justin K. Romberg, Terence Tao:
Robust uncertainty principles: exact signal reconstruction from highly incomplete frequency information. IEEE Trans. Inf. Theory 52(2): 489-509 (2006) - [j5]Emmanuel J. Candès, Terence Tao:
Near-Optimal Signal Recovery From Random Projections: Universal Encoding Strategies? IEEE Trans. Inf. Theory 52(12): 5406-5425 (2006) - 2005
- [j4]Emmanuel J. Candès, Terence Tao:
Decoding by linear programming. IEEE Trans. Inf. Theory 51(12): 4203-4215 (2005) - [c2]Emmanuel J. Candès, Mark Rudelson, Terence Tao, Roman Vershynin:
Error Correction via Linear Programming. FOCS 2005: 295-308 - [c1]Terence Tao, Van H. Vu:
On random pm 1 matrices: singularity and determinant. STOC 2005: 431-440 - [i1]Emmanuel J. Candès, Terence Tao:
Decoding by Linear Programming. CoRR abs/math/0502327 (2005) - 2004
- [j3]Allen Knutson, Terence Tao, Christopher Woodward:
A Positive Proof of the Littlewood-Richardson Rule using the Octahedron Recurrence. Electron. J. Comb. 11(1) (2004) - 2002
- [j2]James E. Colliander, Markus Keel, Gigliola Staffilani, Hideo Takaoka, Terence Tao:
A Refined Global Well-Posedness Result for Schrödinger Equations with Derivative. SIAM J. Math. Anal. 34(1): 64-86 (2002) - 2001
- [j1]James E. Colliander, Markus Keel, Gigliola Staffilani, Hideo Takaoka, Terence Tao:
Global Well-Posedness for Schrödinger Equations with Derivative. SIAM J. Math. Anal. 33(3): 649-669 (2001)
Coauthor Index
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last updated on 2024-06-10 21:25 CEST by the dblp team
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