solve

Execute quantum many-body simulations via Slurm or local scripts with verification checks.

60|92|Updated Apr 30, 2026
One-click install
npx skills add https://github.com/QuantumBFS/quantum.harness --skill solve-quantumbfs
Or copy as Structured Prompt for Agent
Please help me install this Agent Skill.
Skill: solve
Source: https://github.com/QuantumBFS/quantum.harness/tree/main/skills/solve
Command: npx skills add https://github.com/QuantumBFS/quantum.harness --skill solve-quantumbfs

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

This Skill provides a structured, expert-verified environment for solving complex quantum many-body research problems, ensuring that computational methods are applied with correct parameters and verification checks.

Core Features & Use Cases

  • Interactive Problem Solving: Guides the user through an intake-to-report loop for specific quantum physics problems like ground state calculations or gap analysis.
  • Expert-Curated Methods: Leverages specialized harness paths for exact diagonalization, MPS, PEPS, QMC, and more, ensuring research-grade accuracy.
  • Use Case: When investigating the ground state of a Heisenberg model, the skill automatically selects the appropriate method card, runs the simulation, and generates convergence plots.

Quick Start

Ask the skill to compute the ground state of the Heisenberg model for N equals 20 sites.

Frequently Asked Questions about solve

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
How do I compute the ground state of a Heisenberg model for a specific number of sites?

To compute the ground state of a Heisenberg model, this Skill matches your problem to an expert-curated method card, runs the simulation, and generates automated convergence plots and physical observables for your specified sites.

What is the best way to run quantum many-body simulations using exact diagonalization or MPS?

Running quantum many-body simulations is handled by matching your problem to specialized numerical method harnesses like exact diagonalization or MPS, executing via local scripts or Slurm, and verifying results through mandatory checks.

Can I execute quantum physics simulations through a Slurm cluster?

Yes, you can execute quantum physics simulations through Slurm, as the Skill facilitates end-to-end simulation execution via Slurm or local scripts and automatically reports the physical observables from the cluster output.

How does automated reporting work for quantum many-body gap analysis?

Automated reporting for gap analysis works by executing the matched simulation workflow and generating a literature-backed interpretation of physical observables, ensuring research integrity through mandatory verification checks.

Do I need to manually select numerical methods like QMC or PEPS for my many-body research?

No, you do not need to manually select numerical methods like QMC or PEPS, because the Skill automatically matches your quantum many-body research problem to the appropriate expert-curated numerical method card.

What limitations exist when using automated quantum research workflows for complex physics problems?

A key limitation is that automated quantum research workflows enforce mandatory verification checks, meaning you cannot bypass research integrity validation or skip literature-backed interpretation during physical observables reporting.