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micro125D AGO

Physics Expert (Condensed Matter / Magnetic Materials)

micro1 / Physics Expert (Condensed Matter / Magnetic Materials)

RATE

$80 - $160/HR

LOCATION

REMOTE (GLOBAL)

DESCRIPTION

Role Title: Physics Expert (Condensed Matter / Magnetic Materials) Role Type: Contractor Location: Remote micro1 is engaging Physics Experts (Condensed Matter / Magnetic Materials) to contribute to a leading-edge research opportunity focused on magnetic space groups, neutron scattering, BNS notation, and the physical signatures of magnetic order. In this role, you'll apply your expertise to help train next-generation AI systems. Your work will shape how models learn, reason, and perform through high-quality, real-world input. No prior experience in AI is required — your domain knowledge is what matters. Scope of Work • Analyze and interpret magnetic structure factors, utilizing propagation-vector methodologies and advanced symmetry concepts in condensed matter physics. • Identify and classify magnetic phases (AFM, FM, and related types) using both theoretical and experimental data, including neutron diffraction results. • Curate and validate magnetic space group assignments with reference to established datasets such as MAGNDATA, ensuring robust correlation with BNS notation conventions. • Evaluate birefringence and magneto-optic Kerr effect (MOKE) signatures for selected materials, connecting optical phenomena to underlying magnetic structure. Preferred

REQUIREMENTS

  • Advanced academic background (PhD or equivalent research experience) in condensed matter physics, with a specialization in magnetism or related fields.
  • Demonstrated proficiency in magnetic structure factor calculations, propagation-vector analysis, and symmetry-based phase identification.
  • Direct experience classifying magnetic space groups, with hands-on familiarity with MAGNDATA and BNS notation.
  • Strong knowledge of neutron scattering techniques for magnetic structure determination.
  • Ability to connect experimental signatures (e.g., birefringence, MOKE) to underlying physical mechanisms.

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