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Results: 1 to 30 of 48 found      Go to page: 1 2

[1] Jeremy J. Becnel. Hidden subspace algorithm in white noise analysis. Trans. Amer. Math. Soc. 364 (2012) 5035-5055.
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[2] F. Alberto Grünbaum. Quantum walks and CMV matrices. Contemporary Mathematics 578 (2012) 133-141.
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[3] Topological quantum computers. CBMS Regional Conference Series in Mathematics 112 (2010) 89-95.
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[4] Approximation of the Jones polynomial. CBMS Regional Conference Series in Mathematics 112 (2010) 35-40.
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[5] Zhenghan Wang. Topological Quantum Computation. CBMS Regional Conference Series in Mathematics 112 (2010) MR MR2640343.
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[6] Temperley-Lieb-Jones theories. CBMS Regional Conference Series in Mathematics 112 (2010) 1-23.
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[7] Quantum circuit model. CBMS Regional Conference Series in Mathematics 112 (2010) 25-33.
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[8] (2+1)-TQFTs. CBMS Regional Conference Series in Mathematics 112 (2010) 57-72.
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[9] Outlook and open problems. CBMS Regional Conference Series in Mathematics 112 (2010) 109-110.
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[10] Ribbon fusion categories. CBMS Regional Conference Series in Mathematics 112 (2010) 41-56.
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[11] TQFTs in nature. CBMS Regional Conference Series in Mathematics 112 (2010) 73-87.
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[12] Topological phases of matter. CBMS Regional Conference Series in Mathematics 112 (2010) 97-107.
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[13] Chi-Kwong Li and Nung-Sing Sze. Canonical forms, higher rank numerical ranges, totally isotropic subspaces, and matrix equations. Proc. Amer. Math. Soc. 136 (2008) 3013-3023. MR 2407062.
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[14] Michael H. Freedman, Alexei Kitaev, Michael J. Larsen and Zhenghan Wang. Topological quantum computation. Bull. Amer. Math. Soc. 40 (2003) 31-38. MR 1943131.
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[15] A. Yu. Kitaev, A. H. Shen and M. N. Vyalyi. Classical computation. Graduate Studies in Mathematics 47 (2002) 9-9.
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[16] A. Yu. Kitaev, A. H. Shen and M. N. Vyalyi. Quantum computation. Graduate Studies in Mathematics 47 (2002) 53-54.
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[17] A. Yu. Kitaev, A. H. Shen and M. N. Vyalyi. Problems of Section 13. Graduate Studies in Mathematics 47 (2002) 230-234.
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[18] A. Yu. Kitaev, A. H. Shen and M. N. Vyalyi. Quantum probability. Graduate Studies in Mathematics 47 (2002) 92-100.
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[19] A. Yu. Kitaev, A. H. Shen and M. N. Vyalyi. Correspondence between classical and quantum computation. Graduate Studies in Mathematics 47 (2002) 60-65.
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[20] A. Yu. Kitaev, A. H. Shen and M. N. Vyalyi. Problems of Section 11. Graduate Studies in Mathematics 47 (2002) 224-230.
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[21] A. Yu. Kitaev, A. H. Shen and M. N. Vyalyi. Definition of quantum computation. Examples.. Graduate Studies in Mathematics 47 (2002) 82-92.
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[22] A. Yu. Kitaev, A. H. Shen and M. N. Vyalyi. Elementary Number Theory. Graduate Studies in Mathematics 47 (2002) 237-250.
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[23] A. Yu. Kitaev, A. H. Shen and M. N. Vyalyi. The hierarchy of complexity classes. Graduate Studies in Mathematics 47 (2002) 44-51.
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[24] A. Yu. Kitaev, A. H. Shen and M. N. Vyalyi. Bases for quantum circuits. Graduate Studies in Mathematics 47 (2002) 65-82.
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[25] A. Yu. Kitaev, A. H. Shen and M. N. Vyalyi. Problems of Section 10. Graduate Studies in Mathematics 47 (2002) 221-224.
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[26] A. Yu. Kitaev, A. H. Shen and M. N. Vyalyi. Turing machines. Graduate Studies in Mathematics 47 (2002) 9-17.
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[27] A. Yu. Kitaev, A. H. Shen and M. N. Vyalyi. Introduction. Graduate Studies in Mathematics 47 (2002) 1-8.
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[28] A. Yu. Kitaev, A. H. Shen and M. N. Vyalyi. Classical and quantum codes. Graduate Studies in Mathematics 47 (2002) 151-175.
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[29] A. Yu. Kitaev, A. H. Shen and M. N. Vyalyi. Problems of Section 5. Graduate Studies in Mathematics 47 (2002) 202-203.
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[30] A. Yu. Kitaev, A. H. Shen and M. N. Vyalyi. Problems of Section 8. Graduate Studies in Mathematics 47 (2002) 204-216.
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Results: 1 to 30 of 48 found      Go to page: 1 2


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