Media Summary: Okay so I'm going to conclude here first our main result is that we have we have General Bound for The typical model for measurement noise in quantum error correction is to randomly flip the binary measurement outcome. Abstract: Realizing a large-scale, universal quantum computer would enable major technological advances, yet presents a ...

Nicolas Delfosse Two Dimensional Implementations - Detailed Analysis & Overview

Okay so I'm going to conclude here first our main result is that we have we have General Bound for The typical model for measurement noise in quantum error correction is to randomly flip the binary measurement outcome. Abstract: Realizing a large-scale, universal quantum computer would enable major technological advances, yet presents a ...

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Nicolas Delfosse - Two-dimensional implementations of quantum LDPC codes
Nicolas Delfosse(Microsoft Quantum) | Quanta Seminar
Part 1 Quantum LDPC codes | Nicolas Delfosse (Microsoft Research)
Nicolas Delfosse - Introduction to quantum error correction, part 2/3 - IPAM at UCLA
Nicolas Delfosse - Introduction to quantum error correction, part 1/3 - IPAM at UCLA
Nicolas Delfosse - Fast erasure decoder for a class of quantum LDPC codes - IPAM at UCLA
Part 3 Quantum LDPC codes | Nicolas Delfosse (Microsoft Research)
Nicolas Delfosse - Introduction to quantum error correction, part 3/3 - IPAM at UCLA
Nicolas Delfosse - Beyond single-shot fault-tolerant quantum error correction
Part 2 Quantum LDPC codes | Nicolas Delfosse (Microsoft Research)
Part 4 Quantum LDPC codes | Nicolas Delfosse (Microsoft Research)
Nicolas Delfosse:  Improved quantum error correction using soft information
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Nicolas Delfosse - Two-dimensional implementations of quantum LDPC codes

Nicolas Delfosse - Two-dimensional implementations of quantum LDPC codes

Okay so I'm going to conclude here first our main result is that we have we have General Bound for

Nicolas Delfosse(Microsoft Quantum) | Quanta Seminar

Nicolas Delfosse(Microsoft Quantum) | Quanta Seminar

Two

Part 1 Quantum LDPC codes | Nicolas Delfosse (Microsoft Research)

Part 1 Quantum LDPC codes | Nicolas Delfosse (Microsoft Research)

Lecture 1 notes https://www.ias.edu/sites/default/files/

Nicolas Delfosse - Introduction to quantum error correction, part 2/3 - IPAM at UCLA

Nicolas Delfosse - Introduction to quantum error correction, part 2/3 - IPAM at UCLA

Recorded 13 September 2023.

Nicolas Delfosse - Introduction to quantum error correction, part 1/3 - IPAM at UCLA

Nicolas Delfosse - Introduction to quantum error correction, part 1/3 - IPAM at UCLA

Recorded 12 September 2023.

Nicolas Delfosse - Fast erasure decoder for a class of quantum LDPC codes - IPAM at UCLA

Nicolas Delfosse - Fast erasure decoder for a class of quantum LDPC codes - IPAM at UCLA

Recorded 30 November 2023.

Part 3 Quantum LDPC codes | Nicolas Delfosse (Microsoft Research)

Part 3 Quantum LDPC codes | Nicolas Delfosse (Microsoft Research)

Lecture 3 notes https://www.ias.edu/sites/default/files/

Nicolas Delfosse - Introduction to quantum error correction, part 3/3 - IPAM at UCLA

Nicolas Delfosse - Introduction to quantum error correction, part 3/3 - IPAM at UCLA

Recorded 14 September 2023.

Nicolas Delfosse - Beyond single-shot fault-tolerant quantum error correction

Nicolas Delfosse - Beyond single-shot fault-tolerant quantum error correction

Presenter:

Part 2 Quantum LDPC codes | Nicolas Delfosse (Microsoft Research)

Part 2 Quantum LDPC codes | Nicolas Delfosse (Microsoft Research)

Lecture

Part 4 Quantum LDPC codes | Nicolas Delfosse (Microsoft Research)

Part 4 Quantum LDPC codes | Nicolas Delfosse (Microsoft Research)

Lecture 4 notes https://www.ias.edu/sites/default/files/

Nicolas Delfosse:  Improved quantum error correction using soft information

Nicolas Delfosse: Improved quantum error correction using soft information

The typical model for measurement noise in quantum error correction is to randomly flip the binary measurement outcome.

Network Architecture for a Surface Code Quantum Computer in Silicon - Jonathan Baugh | ESSCIRC 2019

Network Architecture for a Surface Code Quantum Computer in Silicon - Jonathan Baugh | ESSCIRC 2019

Abstract: Realizing a large-scale, universal quantum computer would enable major technological advances, yet presents a ...