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Quantum computing

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Next student seminar :
Access to the program

Here you can find information about your internships:
Experimental Internship - Undergraduate program
Master ICFP first year Internship

News : ICFP Research seminars
November 14 - 18, 2022 :

All information about the program

Contact us - Student support and Graduate School office :
Tél : 01 44 32 35 60
enseignement@phys.ens.fr

Teachers : Thomas Ayral

number ECTS : 3

Language of instruction : English

Evaluation : Written

Description :

The goal of this course is to introduce the main concepts and challenges of quantum computing. We will review both the theoretical premises and promises of ideal quantum computers, and the practical challenges that one faces when one actually runs quantum programs on today’s physical quantum computers: what is the role of decoherence? how does one deal with it in practical quantum algorithms? The course will also introduce the key concepts of quantum error correction, which could be used when sufficient qubit counts and qualities are reached.

The course will combine conventional blackboard lectures and exercise sessions with small quantum programming numerical projects and short research journal clubs.

A. Quantum computing with ideal quantum computers

1. Quantum states, circuits and algorithms

2. The role of entanglement

3. Quantum computing for fermionic problems

B. Realistic quantum computation

1. Noisy quantum computers and decoherence

2. Algorithms & applications of noisy quantum computers

3. Error mitigation

C. Quantum error correction

Quick links

Next student seminar :
Access to the program

Here you can find information about your internships:
Experimental Internship - Undergraduate program
Master ICFP first year Internship

News : ICFP Research seminars
November 14 - 18, 2022 :

All information about the program

Contact us - Student support and Graduate School office :
Tél : 01 44 32 35 60
enseignement@phys.ens.fr