micro1 is engaging Physics Experts specializing in Atomic, Molecular, and Optical (AMO) Physics to contribute to a specialized AI training project focused on atomic structure, spectroscopy, polarizability, and optical properties.
You'll apply your advanced physics expertise to evaluate, explain, and solve technical problems involving atomic-structure calculations and quantum-mechanical methods. No prior AI experience is required—your scientific expertise is what matters.
Scope of Work
Provide expert-level insights into AMO physics, atomic structure, spectroscopy, and optical properties.
Review and analyze ab initio configuration interaction (CI) methods for calculating atomic polarizability.
Evaluate and discuss atomic-structure calculations for Yb-171 and Yb-174.
Analyze electronic states, energy levels, transition properties, and relevant spectroscopic data.
Identify and explain (sigma) vs. (pi) transitions where applicable, including orbital symmetry and transition selection rules.
Apply knowledge of electric-dipole transitions, parity, angular momentum, and selection rules to atomic and molecular systems.
Critically review scientific reasoning, computational approaches, and calculated results.
Participate in adaptive spoken AI interviews, answering one technical question at a time with clear, scientifically rigorous explanations.
Provide concrete examples based on legally shareable research, publications, simulations, or projects.
Required Skills
AMO / Atomic Physics
Ab Initio Configuration Interaction
Atomic Polarizability Calculations
Atomic-Structure Calculations
Yb-171 / Yb-174
Quantum Mechanical Methods
Atomic Spectroscopy & Selection Rules
Sigma () vs. Pi () Transition Identification
Electronic Structure & Energy-Level Analysis
Scientific Communication
Preferred Qualifications
Master's, PhD, or equivalent advanced expertise in Physics, preferably specializing in AMO physics, atomic structure, quantum chemistry, or optical physics.
Hands-on experience with ab initio atomic-structure or quantum-chemistry calculations.
Strong understanding of configuration interaction methods and polarizability calculations.
Experience working with ytterbium (Yb) atomic systems, particularly Yb-171 and Yb-174.
Knowledge of atomic spectroscopy, transition probabilities, selection rules, angular momentum, and parity.
Ability to distinguish and explain and transitions using orbital symmetry and transition characteristics.
Strong written and verbal communication skills.
Ability to explain complex physics concepts clearly and rigorously.
Engagement
Part-time, contract-based
Fully remote
Flexible working hours
Approximately 5–10+ hours per week
Opportunities to work outside standard hours, including evenings and weekends
Candidates worldwide are welcome
Numbers & Facts
Location
Miami, Florida (Remote)
Skills
Analysis Skillsunmatched
Artificial Intelligence (AI)unmatched
Chemistryunmatched
Communication Skillsunmatched
Concreteunmatched
Physicsunmatched
Presentation/Verbal Skillsunmatched
Problem Solving Skillsunmatched
Publicationsunmatched
Spectroscopyunmatched
Writing Skillsunmatched
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