Ruslan Shaydulin (@ruslanquantum) 's Twitter Profile
Ruslan Shaydulin

@ruslanquantum

Quantum algorithms researcher @jpmorgan. Views my own.

ID: 1316039333175066624

linkhttps://shaydul.in calendar_today13-10-2020 15:33:33

121 Tweet

303 Followers

123 Following

Q-NEXT (@qnextquantum) 's Twitter Profile Photo

Marco Pistoia and industry partner J.P. Morgan contribute to Q-NEXT’s mission to develop the technology needed to connect the world through #quantum networks. Learn about their efforts: anl.gov/article/pushin…

Marco Pistoia and industry partner <a href="/jpmorgan/">J.P. Morgan</a> contribute to Q-NEXT’s mission to develop the technology needed to connect the world through #quantum networks. Learn about their efforts: anl.gov/article/pushin…
Ruslan Shaydulin (@ruslanquantum) 's Twitter Profile Photo

📣 It is not too late to apply for the Summer 2024 Internship in the #Quantum Group of Global Technology Applied Research J.P. Morgan🕰🚀 We are looking for PhD and Masters students with a strong publication history in quantum algorithms or related fields. jpmc.fa.oraclecloud.com/hcmUI/Candidat…

Q-NEXT (@qnextquantum) 's Twitter Profile Photo

Marco Pistoia, head of Global Technology Applied Research at J.P. Morgan, brings together a stellar team to advance #quantum technologies for the financial world: anl.gov/article/pushin…

Marco Pistoia, head of Global Technology Applied Research at <a href="/jpmorgan/">J.P. Morgan</a>, brings together a stellar team to advance #quantum technologies for the financial world: anl.gov/article/pushin…
Physical Review Research (@physrevresearch) 's Twitter Profile Photo

Hardness of the maximum-independent-set problem on unit-disk graphs and prospects for quantum speedups, Ruben S. Andrist et al Ruslan Shaydulin Yue Sun Marco Pistoia J.P. Morgan Romina Yalovetzky #Quantum #AtomicPhysics #Optics go.aps.org/3RAwPmU

Hardness of the maximum-independent-set problem on unit-disk graphs and prospects for quantum speedups, Ruben S. Andrist et al <a href="/ruslanquantum/">Ruslan Shaydulin</a> <a href="/gromitsun/">Yue Sun</a> <a href="/marco_pistoia/">Marco Pistoia</a> <a href="/jpmorgan/">J.P. Morgan</a> <a href="/RYalovetzky/">Romina Yalovetzky</a> #Quantum #AtomicPhysics #Optics go.aps.org/3RAwPmU
Ruslan Shaydulin (@ruslanquantum) 's Twitter Profile Photo

Amazing to see J.P. Morgan lead the investment round for Quantinuum. Looking forward to continued collaboration with the leaders in quantum hardware! prnewswire.com/news-releases/…

Quantum (@quantumjournal) 's Twitter Profile Photo

Fresh in Quantum: Parameter Setting in Quantum Approximate Optimization of Weighted Problems by Shree Hari Sureshbabu, Dylan Herman, Ruslan Shaydulin, Joao Basso, Shouvanik Chakrabarti, Yue Sun, and Marco Pistoia doi.org/10.22331/q-202…

Fresh in Quantum: Parameter Setting in Quantum Approximate Optimization of Weighted Problems by Shree Hari Sureshbabu, Dylan Herman, Ruslan Shaydulin, Joao Basso, Shouvanik Chakrabarti, Yue Sun, and Marco Pistoia doi.org/10.22331/q-202…
Infleqtion (@infleqtion) 's Twitter Profile Photo

Curious about the potential quantum holds for transforming financial strategies? Check out the #Q2BSV23 presentation with Pranav Gokhale & Ruslan Shaydulin on their collaboration to optimize ETF arbitrage using Q-CHOP: youtu.be/tLafF8AOZ-c?si….

Michael A. Perlin (@particle_perlin) 's Twitter Profile Photo

The errorcorrectionzoo.org (Victor V. Albert et al.) is incredibly useful for navigating the landscape of these fancy qLDPC codes I keep hearing about. However, I couldn't find any tools to actually tinker with these codes. So I decided to build my own! github.com/Infleqtion/qLD…

The Quantum Insider (@quantumdaily) 's Twitter Profile Photo

Study shows a quantum algorithmic speedup for the quantum approximate optimization algorithm #QAOA. Could lead to advances in logistics, telecommunications, financial modeling, materials science etc. J.P. Morgan Chase, Argonne National Lab QUANTINUUUM thequantuminsider.com/2024/05/30/jpm…

Ruslan Shaydulin (@ruslanquantum) 's Twitter Profile Photo

It was a privilege to work on this milestone demonstration. This result proves beyond doubt that today's quantum computers combined with exascale supercomputers can perform a valuable task that no classical computer can to achieve on its own: certified randomness expansion.