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- From: Janos Asboth <asboth.janos AT ttk.bme.hu>
- To: elmfiz.oktatok-kutatok AT lists.bme.hu, elmfiz.hallgatok AT lists.bme.hu, fizinfo AT lists.kfki.hu
- Subject: [Fizinfo] BME Elm. Fiz. Szeminárium, márc. 18., Zimborás Zoltán
- Date: Thu, 17 Mar 2022 13:02:07 +0100
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Meghívó
BME Elméleti Fizika Szeminárium
márc. 18. péntek 10h15,
1111 Budapest, Budafoki út 8., BME F III. magasföldszint 01.,
Elméleti Fizika Tanszék szemináriumi szoba
és
online
<https://teams.microsoft.com/l/meetup-join/19%3ae1a26210676841cdbb27bb01cf353392%40thread.tacv2/1647518237177?context=%7b%22Tid%22%3a%226a3548ab-7570-4271-91a8-58da00697029%22%2c%22Oid%22%3a%22c7eaf7d2-684b-4597-b217-6a9121400219%22%7d>
a
Microsoft Teamsben,
Zimborás Zoltán (Wigner FK):
Fermion and Boson Sampling: new developments
The paradigm of quantum computational advantage (also known as supremacy)
aims to demonstrate that a programmable quantum device can solve a problem
that no classical computer can solve in any feasible amount of time
(irrespective
of the usefulness of the problem).
In this talk, we shortly describe two such schemes: Fermion Sampling and
Boson
Sampling. We present an overview of the recent developments concerning the
Fermion Sampling scheme [1], and also review some of the parallel
developments
for Boson Sampling. In particular, we discuss hardness guarantees,
experimental
feasibility, certification and actual experimental results.
Finally, we assess the potential of practically useful sampling schemes
(for
many-body, network theory and machine learning problems) based on Fermion
and
Boson Sampling [2].
[1] M. Oszmaniec, N. Dangniam, M. Morales, Z. Zimborás,
Fermion Sampling: a robust quantum computational advantage scheme
using fermionic linear optics and magic input states
arXiv: 2012.15825
[2] D. Nagy, Z. Tabi, P. Hága, Z. Kallus, Z. Zimborás,
Photonic Quantum Policy Learning in OpenAI Gym,
IEEE Quantum Computing and Engineering 2021, pp. 123-129 (2021).
Minden érdeklődőt szeretettel várunk,
Asbóth János
szemináriumi koordinátor
- [Fizinfo] BME Elm. Fiz. Szeminárium, márc. 18., Zimborás Zoltán, Janos Asboth, 03/17/2022
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