JUNIQ Summer School on Quantum Computing - Gate-based and Annealing Systems - Remote
from
Monday, August 26, 2024 (12:30 AM)
to
Friday, August 30, 2024 (5:00 PM)
Monday, August 26, 2024
10:10 AM
Welcome and Introduction to the JSC
-
Kristel Michielsen
Welcome and Introduction to the JSC
Kristel Michielsen
10:10 AM - 10:30 AM
10:30 AM
Introduction to Gate-based Quantum Computing
-
Dennis Willsch
Introduction to Gate-based Quantum Computing
Dennis Willsch
10:30 AM - 11:30 AM
Introduction to quantum bits and quantum gates Programming and Simulating quantum circuits Applications: QFT, Quantum Adder, QAOA
12:30 PM
Introduction to Quantum Annealing
-
Madita Willsch
Introduction to Quantum Annealing
Madita Willsch
12:30 PM - 2:00 PM
This talk is a general introduction to quantum annealing. It covers: - how does a quantum annealer work in theory and what can it be used for; - what are the theoretical and practical limitations; - how to solve problems on quantum annealers, in particular D-Wave quantum annealers as the one hosted by JSC; - the basic information about the architecture of D-Wave quantum annealers; - how to formulate an optimization problem as a QUBO or Ising problem; - different encoding strategies; - how to incorporate constraints; - how to embed a (logical) problem onto the given hardware graph (considering physical connectivity); - how to send a problem to the quantum annealer using D-Wave's Ocean SDK and how to interpret the response; Finally, some small examples are presented and the talk ends with a short hands-on exercise.
3:00 PM
Introduction to Neutral Atom Quantum Computing
-
Jaka Vodeb
Introduction to Neutral Atom Quantum Computing
Jaka Vodeb
3:00 PM - 4:00 PM
Tuesday, August 27, 2024
9:00 AM
QUBO Formulation and QAOA: A Tutorial on Encoding and Solving Combinatorial Optimization Problems - Part I
-
Jhon Alejandro Montanez-Barrera
QUBO Formulation and QAOA: A Tutorial on Encoding and Solving Combinatorial Optimization Problems - Part I
Jhon Alejandro Montanez-Barrera
9:00 AM - 10:00 AM
In this tutorial, we will dive into combinatorial optimization problems and explore how effectively encode these problems using the Quadratic Unconstrained Binary Optimization (QUBO) formulation and how to tackle them using the Quantum Approximate Optimization Algorithm (QAOA).
10:00 AM
Introduction of Hands-on Topics
Introduction of Hands-on Topics
10:00 AM - 10:20 AM
In this session, the topics for the hands-on sessions will be introduced.
10:20 AM
Hardware & Software Setup
Hardware & Software Setup
10:20 AM - 11:00 AM
11:00 AM
Hands-on Session
Hands-on Session
11:00 AM - 12:00 PM
1:00 PM
QUBO Formulation and QAOA: A Tutorial on Encoding and Solving Combinatorial Optimization Problems - Part II
-
Jhon Alejandro Montanez-Barrera
QUBO Formulation and QAOA: A Tutorial on Encoding and Solving Combinatorial Optimization Problems - Part II
Jhon Alejandro Montanez-Barrera
1:00 PM - 2:00 PM
In this tutorial, we will dive into combinatorial optimization problems and explore how effectively encode these problems using the Quadratic Unconstrained Binary Optimization (QUBO) formulation and how to tackle them using the Quantum Approximate Optimization Algorithm (QAOA).
2:00 PM
Hands-on Session
Hands-on Session
2:00 PM - 4:00 PM
4:00 PM
Emulating Quantum Systems
-
Kristel Michielsen
Emulating Quantum Systems
Kristel Michielsen
4:00 PM - 5:00 PM
Full dynamics of a CLOSED quantum spin-1/2 system: gate-based quantum computer & quantum annealer; Full dynamics of an OPEN quantum spin-1/2 system: gate-based quantum computer & quantum annealer; Solving the time-dependent Schrödinger equation numerically; (Part of) our history of emulating quantum computers;
Wednesday, August 28, 2024
9:00 AM
Quantum Annealing Applications
-
Dennis Willsch
Quantum Annealing Applications
Dennis Willsch
9:00 AM - 10:00 AM
Optimization Problems: Airline Scheduling, TSP, Garden Optimization Constraint Problem: 2-SAT Machine Learning Problem: Quantum Support Vector Machine Sampling Problem: Quantum Boltzmann Machin
10:00 AM
Quantum Simulation
-
Jaka Vodeb
Quantum Simulation
Jaka Vodeb
10:00 AM - 11:00 AM
I will talk about the first experimental signatures of two-dimensional many-body false vacuum decay in a quantum material emerging from microscopic interactions. We used a programmable noisy superconducting quantum simulator with 2008 qubits in order to perform simulations corresponding to our specific experiment on quantum domain reconfiguration in a topical electronic crystal. We carefully chose a simulator with the same measured noise spectrum to ensure the fidelity of the model correspondence between the two systems, thereby presenting a realization of simulating real-world open quantum systems according to the original vision of Feynman.
11:00 AM
Hands-on Session
Hands-on Session
11:00 AM - 12:00 PM
1:00 PM
Simulating Noise of Quantum Computers
-
Kevissen Sellapillay
Simulating Noise of Quantum Computers
Kevissen Sellapillay
1:00 PM - 2:00 PM
As much as we want to isolate them, we must see quantum machines as open systems. Interactions happen between the quantum machine and its environment leading to decoherence. This effectively give different types of noise at the level of the machine. What are they and how can we take them into account when doing simulation on our classical computer?
2:00 PM
Hands-on Session
Hands-on Session
2:00 PM - 3:00 PM
Thursday, August 29, 2024
11:00 AM
Building a Superconducting Quantum Computer
-
Rami Barends
(
PGI-13
)
Building a Superconducting Quantum Computer
Rami Barends
(
PGI-13
)
11:00 AM - 12:00 PM
1:00 PM
Hands-on Session
Hands-on Session
1:00 PM - 3:00 PM
3:00 PM
Quantum Annealing - A Broader Perspective
-
Paul Warburton
Quantum Annealing - A Broader Perspective
Paul Warburton
3:00 PM - 4:00 PM
Friday, August 30, 2024
9:00 AM
Feedback Session
Feedback Session
9:00 AM - 10:00 AM
10:00 AM
Hands-on Session
Hands-on Session
10:00 AM - 11:45 AM
2:00 PM
The Future of Quantum Computing
-
Frank Wilhelm-Mauch
The Future of Quantum Computing
Frank Wilhelm-Mauch
2:00 PM - 3:00 PM
3:00 PM
Wrap-up and Goodbye
-
Gabriel Fazito Rezende Fernandes
(
JSC
)
Wrap-up and Goodbye
Gabriel Fazito Rezende Fernandes
(
JSC
)
3:00 PM - 3:30 PM