High Energy Mathematical Physics AI Problem Reviewer
Use advanced expertise in holography, AdS/CFT, and mathematical physics to review and adjudicate AI-generated solutions. Work remotely for 10 hours weekly over 8 to 10 weeks at $80 to $160 per hour.
Generative AI & RLHF
100% Remote Hourly · $80–$160/hr
$80–$160/hr
Compensation
Worldwide
Eligibility
Entry
Experience
Aug 2, 2026
Posted
Open worldwide
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Remote contractor engagement
Flexible part-time schedule
Specialized work at the intersection of physics and AI
About AI Training Work
AI training is the human side of building artificial intelligence. Specialists help models improve by solving difficult problems, reviewing generated responses, comparing competing answers, and explaining whether reasoning is accurate and well supported.
This work gives subject-matter experts a direct role in shaping how advanced AI systems handle technical material. Prior AI experience is not required for this project when you bring the relevant domain expertise.
Evaluate technically demanding AI outputs
Apply your existing research and subject-matter knowledge
Contribute to the development of next-generation AI systems
The Role
OpenTrain AI is seeking a High Energy and Mathematical Physics AI Problem Reviewer to assess research-level material in holography, AdS/CFT, and Weyl anomalies. You may solve problems, audit proposed solutions, or adjudicate competing answers according to your subfield expertise and hands-on experience.
The engagement is listed at entry level, but advanced expertise in high energy physics or mathematical physics is required for the work. The project focuses on text-based problem generation and evaluation in a highly technical research context.
Subject matter: Holography and mathematical physics
Data type: Text
Work types: Text generation and evaluation or rating
What You'll Do
You will analyze difficult mathematical physics problems and communicate your reasoning clearly in written and verbal formats. Your reviews may help determine whether an AI system has correctly applied advanced theoretical concepts and mathematical methods.
Analyze research-level problems involving AdS/CFT correspondence and on-shell gravitational actions.
Formulate or verify tensor algebra expressions involving boundary curvature invariants in dimensions up to 8.
Apply Weyl-Fefferman-Graham gauge frameworks and related mathematical physics methods.
Develop, review, or adjudicate solutions involving holographic Weyl anomalies and associated benchmarks.
Communicate complex scientific reasoning clearly in written and spoken work.
Required Expertise
This role requires advanced knowledge of high energy physics or mathematical physics, including direct experience with AdS/CFT, gravitational actions, and holographic dualities. Strong command of the relevant geometric and algebraic methods is essential.
AdS/CFT correspondence and holographic dualities
On-shell gravitational actions
Weyl-Fefferman-Graham gauge frameworks
Weyl anomalies and Fefferman-Graham expansion
Tensor algebra and differential geometry
Higher-dimensional boundary curvature invariants
Clear written and verbal communication of complex scientific reasoning
Helpful Technical Background
Research experience using the listed methods will support technical problem solving and solution review. Familiarity with computational and mathematical tools may also be useful, although the core qualification is advanced subject-matter expertise.
This is a worldwide remote contractor engagement with a flexible part-time schedule. The expected commitment is approximately 10 hours per week for 8 to 10 weeks.
Location: Worldwide and remote
Time requirement: Less than 20 hours per week
Expected schedule: Approximately 10 hours per week
Duration: 8 to 10 weeks
Pay: $80 to $160 USD per hour
Engagement type: Contractor and part time
How to Apply Through OpenTrain
Create a free OpenTrain account, build your profile around your high energy or mathematical physics expertise, and apply to this project in minutes. Highlight relevant experience with holography, AdS/CFT, Weyl anomalies, differential geometry, and tensor algebra.
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