Quantum Computing & Sensing
Over the summer of 2023, Womanium hosted its Global Quantum Program, an intensive training initiative focused on Quantum Computing, Quantum Sensing, Quantum Communication, and Entrepreneurship. The fully virtual program brought together students, researchers, and professionals from around the world to explore the rapidly evolving quantum ecosystem through expert-led lectures, virtual lab tours, hands-on programming, and industry engagement. Participants developed practical skills across quantum hardware, software, algorithms, and real-world applications while collaborating on industry-inspired projects and gaining exposure to career opportunities and entrepreneurship in quantum technologies.

< Summer program >
WISER Quantum Program 2023



< curriculum >
Program Agenda
Part 1
Quantum Computing
Foundations and
Industry Outlook
David DiVincenzo, Jülich Research Center
The Foundations and Future of Quantum Computing
​
whurley, Strangeworks
Making Quantum Computing Accessible
​
John Levy, SEEQC
Building Scalable, Energy-Efficient Quantum Computers
​
Catherine Vollgraff Heidweiller, Google Quantum AI
The Path Toward Error-Corrected Quantum Computing
​
Bharath Kannan, Atlantic Quantum
Developing Scalable Quantum Computing Architectures
​
Kristen Pudenz, Atom Computing
Advancing Neutral Atom Quantum Computing
Part 2
Quantum Hardware
Jeff Thompson, Princeton University
Neutral Atom Quantum Computing and Quantum Networks
​
Caroline Figgatt, Quantinuum
Trapped-Ion Quantum Computers and Quantum Operations
​
Christof Wunderlich, University of Siegen
Quantum Computing with Trapped Ions
​
Danielle Holmes, University of New South Wales
Silicon-Based Quantum Computing and Donor Qubits
​
Nick Bronn, IBM Quantum
Superconducting Quantum Hardware and Cloud-Based Quantum Systems
​
Kasra Nowrouzi, Lawrence Berkeley National Laboratory
Full-Stack Superconducting Quantum Computing Platforms
​
Zahra Pedramrazi, Berkeley Lab
Superconducting Qubits, Noise, and Error Mitigation
​
Kyle Serniak, MIT Lincoln Laboratory
Noise-Protected Superconducting Qubits
​
Julia Lamprich, IQM Quantum Computers
Designing Superconducting Quantum Hardware
​
Tianyi Li, IQM Quantum Computers
Quantum Chip Fabrication
​
Daria Gusenkova, IQM Quantum Computers
Application-Specific Quantum Processor Design
​
Bharath Kannan, Atlantic Quantum
Architectures for Connecting Quantum Processors
​
Katie Porsch, SEEQC
Automating Qubit Calibration
​
Anastasiia Butko, Lawrence Berkeley National Laboratory
Classical Control Systems for Quantum Processors
Part 3
Quantum Hardware Lab
Tours and Engineering
Stefan Seegerer, IQM Quantum Computers
Inside a Superconducting Quantum Computer
​
Bruno Küng, Zurich Instruments
Quantum Control and Measurement Systems
​
Arash Fereidouni, Zurich Instruments
Tools for Controlling and Measuring Quantum Devices
​
Wendy Casker, IonQ
Engineering the Control Systems Behind a Quantum Computer
​
Marlene Kilpatrick, IonQ
Systems Engineering for Quantum Computing
​
Yashna Lekhai, UK National Quantum Computing Centre
Building and Operating Trapped-Ion Quantum Systems
​
Erik Eisenach, Quantum Brilliance
Diamond-Based Quantum Computing
​
Mana Norouzpour, D-Wave
Materials Science for Quantum Processor Development
Part 4
Quantum Programming
and Algorithms
Kanav Setia, qBraid
Quantum Algorithms and Accessible Quantum Computing Platforms
​
Ricky Young, qBraid
Building an Integrated Platform for Quantum Computing
​
Catalina Albornoz, Xanadu
Quantum Programming with PennyLane
​
Kathrin Spendier, Quantinuum
Quantum Software Development with TKET
​
Abdullah Khalid, QWorld
Quantum Error Correction and Fault-Tolerant Quantum Computing
​
Jibran Rashid, QWorld
Communicating and Teaching Quantum Computing Concepts
​
Sabah Ud Din Ahmad, QWorld and QPakistan
Quantum Programming, Optimization, and Simulation
​
Taha Rouabah, CQTech and University of Constantine 1
Topological Quantum Computing and Quantum Algorithms
​
Markus Buchberger, QMware
Learning and Applying Quantum Computing
Part 5
Optimization & Applications
Alex Koszegi, D-Wave
Developing Quantum-Hybrid Applications
​
Catherine Potts, D-Wave
Quantum Computing for Machine Learning and Data-Driven Problems
​
Margarita Veshchezerova, Terra Quantum
Quantum Algorithms for Optimization
​
Kimberly Shyu, Terra Quantum
Turning Quantum Technologies into Industry Products
​
Masako Yamada, IonQ
Quantum Applications and Continuous Learning
​
Pedro Lopes, QuEra Computing
Identifying Practical Entry Points for Quantum Computing
​
Kristin Gilkes, EY
Quantum Computing for Business, Finance, and Industry
​
Elizabeth Iwasawa, Leidos
Quantum Computing, Communications, Sensing, and Simulation
Part 6
Communication and
Security
Aeysha Khalique, National University of Sciences and Technology
Quantum Key Distribution and the Quantum Internet
​
Angela Robinson, National Institute of Standards and Technology
Post-Quantum Cryptography and Code-Based Security
​
Jeff Thompson, Princeton University
Quantum Networks with Neutral Atoms and Rare-Earth Ions
Part 7
Sensing
Ulrik Andersen, Technical University of Denmark
Quantum Optics and Macroscopic Quantum States
​
Bonnie Marlow, MITRE Corporation
Rydberg Atom Sensors and the Future of Quantum Sensing
​
Svenja Knappe, FieldLine and University of Colorado Boulder
Quantum Magnetometers for Brain Imaging
​
Nicole Metje, University of Birmingham
Quantum Gravity Sensors for Underground Infrastructure
​
Asger Sellerup Jensen, NKT Photonics
Photonics Technologies for Quantum Applications
​
Erik Eisenach, Quantum Brilliance
Quantum Sensing with Diamond Defects
​
Abhinav Verma, Technical University of Denmark
Non-Gaussian States for Quantum Optics and Computing
​
Olga Solodovnikova, Technical University of Denmark
Generating Optical Qubits for Quantum Computing
Part 8
Careers and Workforce
Emily Moroz, D-Wave
Careers and Hiring in Quantum Computing
​
Rebecca Panzer, IonQ
Building the People and Programs Behind Quantum Technology
​
Christopher Bishop, Improvising Careers
Preparing for Emerging Careers in Quantum Technology
​
Elizabeth Iwasawa, Leidos
Developing a Multidisciplinary Quantum Workforce
​
Stefan Seegerer, IQM Quantum Computers
Quantum Education and Workforce Development
Part 9
Entrepreneurship and
Commercialization
Ilana Wisby, Oxford Quantum Circuits
Building and Scaling a Quantum Computing Company
​
whurley, Strangeworks
Quantum Entrepreneurship and Technology Leadership
​
John Levy, SEEQC
From Venture Capital to Quantum Startup Leadership
​
Pedro Lopes, QuEra Computing
Bringing Quantum Technology to Customers and Developers
​
Kimberly Shyu, Terra Quantum
Quantum Product Management and Commercialization
​
Kristen Pudenz, Atom Computing
Industry Collaboration and Advanced Quantum Research





