From randomized benchmarking to cycle error reconstruction

Published on ● Video Link: https://www.youtube.com/watch?v=5W3OqvzmJT0



Duration: 52:54
87 views
0


Joseph Emerson (IQC, University of Waterloo, and Quantum Benchmark Inc.)
https://simons.berkeley.edu/talks/joseph-emerson-iqc-university-waterloo-quantum-benchmark-inc-2024-04-23
Near-Term Quantum Computers: Fault Tolerance + Benchmarking + Quantum Advantage + Quantum Algorithms

In this talk I will give an overview of the state-of-the-art methods for benchmarking and characterizing the errors that impact quantum computing performance, ranging from simple fidelities of primitive gate operations to the biased and correlated error rates in more complex circuits structures.




Other Videos By Simons Institute for the Theory of Computing


2024-04-30A Quantum Speed-Up for Approximating the Top Eigenvector of aMatrix via Improved Tomography
2024-04-30The Virtues of the Quantum Approximate Optimization Algorithm
2024-04-30Continuous-time quantum walks for MAX-CUT are hot
2024-04-30Circuit Conspiracies
2024-04-30Analog quantum machine learning for near-term hardware
2024-04-30Hardware-efficient quantum computing using qudits
2024-04-30Probing the limits of classical computing with arbitrarily connected quantum circuits
2024-04-30Emergence of Universal Randomness in Quantum Many-body Dynamics
2024-04-30Exploring the quantum computing frontier with reconfigurable atom arrays
2024-04-30On Scrambling Times of Quantum Systems, Including Black Holes
2024-04-30From randomized benchmarking to cycle error reconstruction
2024-04-30How to fault-tolerantly realize any quantum circuit with local operations
2024-04-30Quantum Lego: Quantum Codes and their Enumerators from Tensor Networks
2024-04-30QEC demonstrations leveraging dynamic circuits
2024-04-30Scheduling syndrome measurement circuits
2024-04-30Halving the cost of surface codes by running error correction at the logical level
2024-04-30A NASA Perspective on Quantum Computing, with Emphasis on Recent Results in Distributed Computing
2024-04-30Quantum neural networks
2024-04-30Classical algorithm for simulating experimental Gaussian boson sampling
2024-04-30Dawn in the age of quantum fault tolerance
2024-04-25Near-Tight Bounds for 3-Query Locally Correctable Binary Linear Codes via Rainbow Cycles



Tags:
Simons Institute
theoretical computer science
UC Berkeley
Computer Science
Theory of Computation
Theory of Computing
Near-Term Quantum Computers: Fault Tolerance + Benchmarking + Quantum Advantage + Quantum Algorithms
Joseph Emerson