qubitsok.com
Cut Noise. Work Quantum.
Europe, France, Aubervilliers
•
Posted 53 days ago
🏢 Alice & Bob
Role Type
Role Focus
Seniority
Employer Type
This Nanofabrication Backend Internship supports the manufacturing and quality control of superconducting quantum processors (QPUs). The primary goal is to improve QPU quality by implementing automated optical inspection on the circuits. This includes integrating new equipment, developing automation recipes, and formalizing the classification of fabrication defects.
Key Responsibilities
Support the team's daily lab activities, including electrical testing, dicing, optical inspection, and wire-bonding of quantum chips.
Develop and optimize optical measurement protocols to accurately evaluate chip quality and viability.
Create or modify analysis scripts using Python to automate image processing and data analysis.
Automate the process of chip sorting and the extraction of yield and performance indicators.
Implement automated optical inspection procedures to improve the quality assurance of Quantum Processor Units.
Formalize standard operating protocols (SOPs) and write follow-up reports detailing experimental progress.
Required Skills
Practical knowledge of optical systems.
Practical knowledge of microscopy and handling of measurement instrumentation.
Good working knowledge of Python.
Ability to document experiments and interpret results.
Meticulous and patient.
Technology Tags
The job involves manufacturing Quantum Processor Units based on the explicitly mentioned Schrödinger cat qubit architecture.
The job title is Nanofabrication backend Internship, directly implying involvement with micro and nanofabrication processes.
A primary responsibility is implementing and optimizing automated optical inspection protocols and using measurement instrumentation.
The intern is part of the Quantum Hardware department working to manufacture the Quantum Processor Unit.
Good working knowledge of Python is explicitly required for developing analysis scripts and automating image processing.
The job description emphasizes that the Schrödinger cat qubits are designed to implement quantum error correction autonomously.
The backend responsibilities include electrical testing, dicing, and wirebonding, which are standard microelectronics manufacturing processes.