QuipNetwork/xq-py
A python implementation of the Quip Network's quantum virtual machine observed · 2026-08-28
Health v2 · maintenance only
52/100
- Activity 85
- Release rhythm 35
- Longevity 10
Flags: no_releases young no_license
How is this computed?
round(0.45*activity + 0.35*rhythm + 0.20*longevity); archived -> min(score, 10) — computed 2026-09-03. Adoption (stars, forks) is never an input.
- gap_med: n/a
- age_days: 153
- days_rel: n/a
- days_push: 91
- n_releases_24m: 0
Adoption not part of the score
5514 stars · 14 forks observed · 2026-08-28
What it is AI-extracted, prompt v1, taxonomy v1, 2026-08-29, confidence not recorded
A Python implementation of the Quip Network's quantum virtual machine, allowing users to simulate quantum programs locally. It serves as a software emulator of quantum hardware for the Quip Network ecosystem.
Use cases
- simulate quantum circuits in python
- run quantum programs without quantum hardware
- test quantum algorithms locally
- emulate a quantum virtual machine
- develop quantum software for the quip network
When to choose
- you want to simulate quantum workloads in Python without access to real quantum hardware
- you are developing or testing software targeting the Quip Network
- you need a lightweight local quantum VM emulator
When to avoid
- you need actual quantum hardware execution
- you need a high-performance compiled quantum simulator outside the Python ecosystem
- you require a license-guaranteed usage model, as no license is specified
Facets
library · maturity active
simulation sdk developer-tools quantum-computing simulation developer-tools python cross-platform quantum-computing quantum-virtual-machine simulator python
1 source
- readme: https://github.com/QuipNetwork/xq-py · fetched 2026-08-28 · fc2272324b31
Member repositories
| Repository | Role | Health v2 |
|---|---|---|
| QuipNetwork/xq-py | main | 52 |
For agents
markdown · JSON · MCP: product_card(name="QuipNetwork/xq-py")
Data as of 2026-08-30T08:39:29.467469+00:00 · Report a problem