DocumentCode
2531261
Title
Randomness vs. time: de-randomization under a uniform assumption
Author
Impagliazzo, Russell ; Wigderson, Avi
Author_Institution
Dept. of Comput. Sci., California Univ., San Diego, La Jolla, CA, USA
fYear
1998
fDate
8-11 Nov 1998
Firstpage
734
Lastpage
743
Abstract
We prove that if BPP≠EXP, then every problem in BPP can be solved deterministically in subexponential time on almost every input (on every samplable ensemble for infinitely many input sizes). This is the first derandomization result for BPP based on uniform, noncryptographic hardness assumptions. It implies the following gap in the average-instance complexities of problems in BPP: either these complexities are always sub-exponential or they contain arbitrarily large exponential functions. We use a construction of a small “pseudorandom” set of strings from a “hard function” in EXP which is identical to that used in the analogous non-uniform results described previously. However, previous proofs of correctness assume the “hard function” is not in P/poly. They give a non-constructive argument that a circuit distinguishing the pseudo-random strings from truly random strings implies that a similarly-sized circuit exists computing the “hard function”. Our main technical contribution is to show that, if the “hard function” has certain properties, then this argument can be made constructive. We then show that, assuming ESP⊆P/poly, there are EXP-complete functions with these properties
Keywords
computational complexity; randomised algorithms; EXP-complete functions; average-instance complexities; derandomization; noncryptographic hardness; proofs of correctness; pseudo-random strings; randomness; uniform assumption; Algorithm design and analysis; Computer science; Concrete; Counting circuits; Cryptography; History; Polynomials;
fLanguage
English
Publisher
ieee
Conference_Titel
Foundations of Computer Science, 1998. Proceedings. 39th Annual Symposium on
Conference_Location
Palo Alto, CA
ISSN
0272-5428
Print_ISBN
0-8186-9172-7
Type
conf
DOI
10.1109/SFCS.1998.743524
Filename
743524
Link To Document