Research output per year
Research output per year
Stefan Hillmich, Igor L. Markov, Robert Wille
Research output: Chapter in Book/Report/Conference proceeding › Conference contribution › peer-review
Quantum computers promise significant speedups in solving problems intractable for conventional computers but, despite recent progress, remain limited in scaling and availability. Therefore, quantum software and hardware development heavily rely on simulation that runs on conventional computers. Most such approaches perform strong simulation in that they explicitly compute amplitudes of quantum states. However, such information is not directly observable from a physical quantum computer because quantum measurements produce random samples from probability distributions defined by those amplitudes. In this work, we focus on weak simulation that aims to produce outputs which are statistically indistinguishable from those of error-free quantum computers. We develop algorithms for weak simulation based on quantum state representation in terms of decision diagrams. We compare them to using state-vector arrays and binary search on prefix sums to perform sampling. Empirical validation shows, for the first time, that this enables mimicking of physical quantum computers of significant scale.
Original language | English |
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Title of host publication | 2020 57th ACM/IEEE Design Automation Conference, DAC 2020 |
Publisher | Institute of Electrical and Electronics Engineers Inc. |
ISBN (Electronic) | 9781450367257 |
DOIs | |
State | Published - Jul 2020 |
Externally published | Yes |
Event | 57th ACM/IEEE Design Automation Conference, DAC 2020 - Virtual, San Francisco, United States Duration: 20 Jul 2020 → 24 Jul 2020 |
Name | Proceedings - Design Automation Conference |
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Volume | 2020-July |
ISSN (Print) | 0738-100X |
Conference | 57th ACM/IEEE Design Automation Conference, DAC 2020 |
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Country/Territory | United States |
City | Virtual, San Francisco |
Period | 20/07/20 → 24/07/20 |
Research output: Non-textual form › Software