quimb-tensor-network

QuTiP/quimb tensor network skill for quantum many-body simulations and entanglement analysis

509 stars

Best use case

quimb-tensor-network is best used when you need a repeatable AI agent workflow instead of a one-off prompt.

QuTiP/quimb tensor network skill for quantum many-body simulations and entanglement analysis

Teams using quimb-tensor-network should expect a more consistent output, faster repeated execution, less prompt rewriting.

When to use this skill

  • You want a reusable workflow that can be run more than once with consistent structure.

When not to use this skill

  • You only need a quick one-off answer and do not need a reusable workflow.
  • You cannot install or maintain the underlying files, dependencies, or repository context.

Installation

Claude Code / Cursor / Codex

$curl -o ~/.claude/skills/quimb-tensor-network/SKILL.md --create-dirs "https://raw.githubusercontent.com/a5c-ai/babysitter/main/library/specializations/domains/science/physics/skills/quimb-tensor-network/SKILL.md"

Manual Installation

  1. Download SKILL.md from GitHub
  2. Place it in .claude/skills/quimb-tensor-network/SKILL.md inside your project
  3. Restart your AI agent — it will auto-discover the skill

How quimb-tensor-network Compares

Feature / Agentquimb-tensor-networkStandard Approach
Platform SupportNot specifiedLimited / Varies
Context Awareness High Baseline
Installation ComplexityUnknownN/A

Frequently Asked Questions

What does this skill do?

QuTiP/quimb tensor network skill for quantum many-body simulations and entanglement analysis

Where can I find the source code?

You can find the source code on GitHub using the link provided at the top of the page.

SKILL.md Source

# Quimb Tensor Network

## Purpose

Provides expert guidance on tensor network simulations for quantum many-body systems, including MPS, DMRG, and entanglement analysis.

## Capabilities

- MPS and DMRG calculations
- TEBD time evolution
- Entanglement entropy computation
- Quantum master equation solving
- Open quantum systems dynamics
- GPU-accelerated contractions

## Usage Guidelines

1. **State Representation**: Use MPS for one-dimensional systems
2. **Ground States**: Run DMRG for ground state calculations
3. **Time Evolution**: Use TEBD for dynamics
4. **Entanglement**: Calculate entanglement entropy and spectra
5. **Open Systems**: Model dissipative quantum systems

## Tools/Libraries

- quimb
- QuTiP
- ITensor

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