DocumentCode :
2723171
Title :
Quantum Query Complexity of State Conversion
Author :
Lee, Troy ; Mittal, Rajat ; Reichardt, Ben W. ; Spalek, R. ; Szegedy, Mario
fYear :
2011
fDate :
22-25 Oct. 2011
Firstpage :
344
Lastpage :
353
Abstract :
State conversion generalizes query complexity to the problem of converting between two input-dependent quantum states by making queries to the input. We characterize the complexity of this problem by introducing a natural information-theoretic norm that extends the Schur product operator norm. The complexity of converting between two systems of states is given by the distance between them, as measured by this norm. In the special case of function evaluation, the norm is closely related to the general adversary bound, a semi-definite program that lower-bounds the number of input queries needed by a quantum algorithm to evaluate a function. We thus obtain that the general adversary bound characterizes the quantum query complexity of any function whatsoever. This generalizes and simplifies the proof of the same result in the case of boolean input and output. Also in the case of function evaluation, we show that our norm satisfies a remarkable composition property, implying that the quantum query complexity of the composition of two functions is at most the product of the query complexities of the functions, up to a constant. Finally, our result implies that discrete and continuous-time query models are equivalent in the bounded-error setting, even for the general state-conversion problem.
Keywords :
computational complexity; function evaluation; quantum computing; query processing; Boolean input; Boolean output; Schur product operator norm; composition property; continuous-time query models; discrete query models; function evaluation; information-theoretic norm; input-dependent quantum states; quantum algorithm; quantum query complexity; state conversion; Algorithm design and analysis; Boolean functions; Complexity theory; Educational institutions; Matrix converters; Quantum mechanics; Vectors; Schur product operator norm; adversary bound; quantum query complexity; quantum walk; semi-definite program; span program;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Foundations of Computer Science (FOCS), 2011 IEEE 52nd Annual Symposium on
Conference_Location :
Palm Springs, CA
ISSN :
0272-5428
Print_ISBN :
978-1-4577-1843-4
Type :
conf
DOI :
10.1109/FOCS.2011.75
Filename :
6108195
Link To Document :
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