Master Thesis Project at Quantum-Sensor Electronics Start-up
AdamanT Quanta ABSammanfattning
AdamantQ, a deep-tech start-up focused on diamond-based quantum technology, is seeking motivated Master's students for a thesis project on polarization-selective photoelectric detection of electron and nuclear spin states in diamond. This unpaid position offers an opportunity to gain insights into the deep-tech industry and expand knowledge in quantum physics, with the project set to take place in fall 2026.Jobbet i korthet
Anställningstyp
visstid
Arbetstid
heltid
Förmåner
Gain practical experience in the deep-tech industry.Expand knowledge in quantum physics and diamond spin systems.
Ansök senast: 2026-08-01
Publicerad: 2026-06-30
Beskrivning
Master Thesis Project at Quantum-Sensor Electronics Start-up
Project: Polarization-selective photoelectric detection of electron and nuclear spin states in diamond
AdamantQ is a deep-tech start-up dedicated to delivering state-of-the-art diamond-based quantum technology. We are developing diamond-based quantum sensors for precise measurements, robust communication and reliable navigation across land, sea and space.
We are looking for motivated Master's students with an interest in diamond spin systems, to join our team and complete their thesis project with us during fall 2026.
This is an exciting opportunity to get an insight into the deep-tech industry and expand your knowledge within quantum physics.
Please note that this is an unpaid position for a master thesis.
Your profile
Master's student affiliated with a Swedish University/College, directly or through an exchange program, enrolled in a related, technical field.
Academic background in quantum technologies, physics, nanoscience or similar.
Self-motivated and dependable with good communication skills.
Strong attention to technical details.
Excellent attendance, timekeeping, and punctuality.
Excellent working proficiency and communication skills in English. Proficiency in Swedish is advantageous.
The project includes
Literature review on nitrogen-vacancy defect dynamics, and the polarization-dependent excitation of their spin states
Literature review of polarization-dependent excitation and driving strategies
Design (simulation from first principles and with CAD tools) and fabrication under supervision of test structures to measure and characterize these dynamics with respect to our diamond samples.
Conclude on the veracity of the results achieved and provide a roadmap forward
How to apply
We only accept applications through our website, www.adamantq.com. Submit all your material in English. Required documents:
CV
University/College grade summary
If you have any questions, contact Operations Manager Josefine Holmberg at jh@adamantq.com.
Please note, applications sent directly via email will be disregarded without notice.
Project: Polarization-selective photoelectric detection of electron and nuclear spin states in diamond
AdamantQ is a deep-tech start-up dedicated to delivering state-of-the-art diamond-based quantum technology. We are developing diamond-based quantum sensors for precise measurements, robust communication and reliable navigation across land, sea and space.
We are looking for motivated Master's students with an interest in diamond spin systems, to join our team and complete their thesis project with us during fall 2026.
This is an exciting opportunity to get an insight into the deep-tech industry and expand your knowledge within quantum physics.
Please note that this is an unpaid position for a master thesis.
Your profile
Master's student affiliated with a Swedish University/College, directly or through an exchange program, enrolled in a related, technical field.
Academic background in quantum technologies, physics, nanoscience or similar.
Self-motivated and dependable with good communication skills.
Strong attention to technical details.
Excellent attendance, timekeeping, and punctuality.
Excellent working proficiency and communication skills in English. Proficiency in Swedish is advantageous.
The project includes
Literature review on nitrogen-vacancy defect dynamics, and the polarization-dependent excitation of their spin states
Literature review of polarization-dependent excitation and driving strategies
Design (simulation from first principles and with CAD tools) and fabrication under supervision of test structures to measure and characterize these dynamics with respect to our diamond samples.
Conclude on the veracity of the results achieved and provide a roadmap forward
How to apply
We only accept applications through our website, www.adamantq.com. Submit all your material in English. Required documents:
CV
University/College grade summary
If you have any questions, contact Operations Manager Josefine Holmberg at jh@adamantq.com.
Please note, applications sent directly via email will be disregarded without notice.
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Master Thesis Project at Quantum-Sensor Electronics Start-up
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