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Physics Expert PhD (Statistical Physics / Quantum Information / Condensed Matter)

Location
Fully Remote, Open to candidates worlwide Worldwide
Pay listed by micro1
$100–200 per hour
Field
Science & research
Type
Remote

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Role description

Copied from micro1's job page on 9 October 2026. The live page on micro1 is the one that counts.

Role Title: Physics Expert PhD (Statistical Physics / Quantum Information / Condensed Matter)

Role Type: Part-Time, Contractor

Location: Fully Remote, Open to candidates worlwide

Schedule

5-10+ hrs/week. Fully flexible (Can accomodate after hours + weekends if needed) micro1 is engaging Physics Experts (Statistical Physics / Quantum Information / Condensed Matter) to contribute to a research-driven customer project at the intersection of theoretical physics and numerical benchmarking.

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 provide expert insights into complex statistical physics phenomena, with a focus on replicated random-bond Ising/Ashkin-Teller models, the toric-code threshold, and the Nishimori line.
  • Deliver clear, well-documented solutions or critiques of problems relating to Kramers-Wannier duality, quenched disorder averaging, square-lattice self-duality, and domain-wall free energy.
  • Engage in advanced numerical work, particularly around 4-state Potts model simulations and interpretation.
  • Identify, discuss, and resolve technical challenges involving noncontractible loop defects and related topological features.
  • Participate as a Solver, Auditor, or Adjudicator on specific project assignments based on your experience and subfield strengths.

Preferred Qualifications

  • Advanced academic background (PhD or equivalent experience) in physics, with specialization in statistical physics, quantum information, or condensed matter theory.
  • Direct, hands-on experience applying Kramers-Wannier duality, quenched disorder averaging, and square-lattice self-duality in research or project settings.
  • Demonstrated proficiency in numerical simulations involving the 4-state Potts model and analysis of domain-wall free energy.
  • Familiarity with topological quantum codes, particularly the toric code and its threshold phenomena.