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To unsubscribe, send an email from your preferred email address with the following message body: UNSUBSCRIBE QIP2017-DISCUSS First Name Last Name Abstract: Recent progress on quantum computing hardware, especially in superconducting qubit systems, highlights the need for practical programming models and tools for these first devices.
In particular, many near-term applications are quantum/classical hybrid algorithms, that treat the quantum computer as a co-processor.
It provides a high-level interface and is independent of a specific quantum architecture.
In the past year, we’ve released LIQUi| to the public for academic use.
Abstract: Recent years have witnessed tremendous progress in laboratory experiments for quantum computing.
As the complexity of these experiments increases, however, so too does the difficultly in verifying the quality of the experiment by some objective measure, and in characterizing any undesired noise processes therein so as to improve the next generation devices.
QIP 2017 is the twentieth international conference on theoretical aspects of quantum computing, quantum cryptography, and quantum information in a series that started in Aarhus in 1998 and was last held in 2016 in Banff.
New this year: QIP will feature parallel tracks each day of the conference, allowing for more accepted talks!
Using a QD coupled to a micropillar, we produced single photons with high purity, near-unity indistinguishability , and high extraction efficiency, all combined in a single device compatibly and simultaneously .In particular, in the absence of a full-fledged quantum computer, we are left with the question: how can we tell if our quantum computer is really working?In this tutorial I will present an overview of the core methods that experimentalists use to address these tasks.A key insight involves associating a large quantum-classical state to an SDP and then learning a “simple” approximation to that state via a boosting process guided by the von Neumann entropy.The idea of viewing certain kinds of classical objects as points in a relaxed quantum landscape has other potential applications in the theory of computation.