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Europe, Netherlands, Delft

Posted 123 days ago

Internship project: Design of quantum computing chips based on semiconductor spin qubit technology

🏛 TNO

EUR 615 - 615 per month

+4 benefits
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Role Type

🛠️ Engineer / Developer

Role Focus

🏗️ Build Systems

Seniority

🌱 Internship / Entry-Level

Employer Type

🏛️ Government

This internship focuses on the design and validation of quantum computing chips based on SiGe semiconductor spin qubit technology. The main goal is to improve the efficiency of the design process by developing and extending specialized design tools, primarily using Python coding. The intern will also utilize various simulation programs (like Ansys HFSS and COMSOL) to analyze performance, extract data, and create preliminary designs for new quantum chip concepts.

Key Responsibilities

Develop, improve, or extend design tools using Python coding to increase the efficiency of the chip design process.

Create robust methods for analyzing simulation data extracted from various programs like Ansys HFSS, COMSOL, QTCAD, or mumax3.

Evaluate the performance of quantum chip designs using data derived from microwave, electrostatic, or micromagnet simulations.

Produce a preliminary design for a new quantum chip concept, specifically focusing on the readout resonator component.

Required Skills

Must be a Masters student in the final phase of study.

Must be studying applied physics, computer sciences, or quantum information science & technology.

Nice-to-have Skills

Programming skills, especially Python coding.

Knowledge of quantum systems, focusing on spin or superconducting qubits.

Experience interpreting simulation data.

Basic understanding of nanofabrication and chip design.

Experience developing and conducting scientific research.

Technology Tags

Spin-Based Systems

The project explicitly focuses on "semiconductor spin qubit technology."

Silicon qubits

The job mentions chips based on "semiconductor (SiGe) spin qubit technology," implying Si/SiGe qubits.

Circuit design

The core task is developing new "device designs" and preparing layered drawings for fabrication.

Device modelling

The validation process relies heavily on simulations (HFSS, COMSOL, QTCAD, mumax3) to evaluate performance.

Microwave & RF

The job description mentions simulation using "Ansys HFSS (microwave modelling)" and designing "readout resonators."

Classical programming

Developing/extending design tools is done using "python coding."

Micro & nano

The job explicitly mentions preparing layered drawings for "cleanroom for nanofabrication."