Postdoctoral researcher

Project
PREP0004128
Overview

The work will entail building a self-driving confocal microscope for quantum measurements of ensemble
and single spins of nitrogen vacancy (NV) centers in diamond for high pressure/force measure. The
envisioned microscope will be capable of supporting photoluminescence, CW-ODMR (optically detected
magnetic resonance) and pulsed-ODMR measurements of NV-diamond samples including nano- and
micro-particles and CVD-grown chips with parts per billion to parts per million levels of NV centers. The
research fellow will measure temperature and pressure/force dependent spectral changes in NV
samples inside a diamond anvil cell.
In addition, the PD fellow will work with the PI to acquire stress/force and temperature dependent NV
measurements, analyze data and develop fiber-optic coupled NV sensors including the development of
novel machine learning methods for signal processing

NV diamond Force Sensing

Qualifications
  • A doctoral degree in physics.
  • 5+ years of relevant experience working with NV centers, including quantum modeling of NV ODMR
    active transitions and successfully designing, building and using a NV-diamond microscope for single
    spin measurements.
  • Experience in using machine learning methods such as PCA, LDA, and neural networks for signal
    processing.
  • Prior experience with diamond anvil cell and high pressure measurements preferred.
  • Strong oral and written communication skills.
  • US citizenship strongly preferred.
Research Proposal

Key responsibilities will include but are not limited to:

  • Design, automate and validate the performance of confocal diamond microscope including
    implementation of active learning methodologies to enable a self-driving microscopy setup.
  • Design and fabricate RF antennas for the diamond anvil cell.
  • Implement PL, CW- and pulsed-ODMR measurements.
  • Analyze and prepare data for reporting to stakeholders; prepare data for publication in peer-
    reviewed journals.
  • Present results at internal meetings and meetings with external stakeholders.
  • Ensure that results, protocols, software, and documentation have been archived or otherwise
    transmitted to the larger organization.
NIST Sponsor
Zeeshan Ahmed
Group
Fundamental Thermodynamics Group
Schedule of Appointment
Full time
Start Date
Sponsor email
Work Location
Onsite NIST
Salary / Hourly rate {Max}
$84,000.00
Total Hours per week
40
End Date