Skip to main content

A Python Framework for the Dynamics of Coherent Ising Machine

Project description

PyCIM

PyCIM is the first simulator that can produce the dynamic behavior of CIM. PyCIM effectively capture some characteristic phenomena of DOPO and CIM, including a spontaneous symmetry breaking, threshold behavior, gain saturation, and the process of CIM solving MAX-CUT problems. Additionally, it is built-in time-varying coupling strengths and pump schedules. Moreover, PyCIM can be used for analyzing the impact of parameters on the performance of CIM, and guiding the design and optimization of actual physical systems.

Requirements

To use the simulator, Python 3.7.7 or above is required.

The following packages are required by the installation:

  • matplotlib==3.5.3
  • numpy==1.21.5
  • scipy==1.7.3

method 1:

pip install pycim-simulator

method 2:

The first step is cloning the repository:

git clone https://github.com/shadowforwind/pycim-simulator.git

Then, install the following packages:

cd pycim-simulator
pip install -r requirements.txt

Catalog

└─simulator
    │  architecture.png
    │  display.ipynb
    │  README.md
    │  requirements.txt
    │
    └─pycim
        │  analyzer.py
        │  competitor.py
        │  sampler.py
        │  __init__.py
        │
        ├─data
        │  │  128.txt
        │  │  20.txt
        │
        ├─simulation
        │  │  device.py
        │  │  setup.py
        │  │  simulate.py
        │  │  solver.py
        │  │  __init__.py
        │  │
        │  ├─model
        │  │  │  c_number.py
        │  │  │  discrete.py
        │  │  │  meanFiled.py
        │  │  │  __init__.py
        │
        ├─utils
        │  │  const.py
        │  │  bias.py
        │  │  file_J.py
        │  │  getIsingEnergy.py
        │  │  __init__.py

Getting started with pycim

The simplest way of familiarize with the pycim-simulator is by exploring the demo case provided in the file ''display.ipynb''. The file ''display.ipynb'' provides step-by-step description of the main commands to: initialize input, transform model, single simulation, result measurement, or solving the Max-Cut problem.

How to contact us

Thanks for your interest in the project! If you have a question or want to discuss something, feel free to send an email to Peixiang Li, Dongyang Wang, or to Junjie Wu.

How to cite

When using pycim simulator for research projects, please cite:

Li, P., Cheng, H., Liu, Y., Wang, D., Wu, J. (2024). PyCIM: A Python Framework for the Dynamics of Coherent Ising Machine. In: Huang, DS., Zhang, C., Guo, J. (eds) Advanced Intelligent Computing Technology and Applications. ICIC 2024. Lecture Notes in Computer Science, vol 14871. Springer, Singapore. https://doi.org/10.1007/978-981-97-5609-4_15

Project details


Download files

Download the file for your platform. If you're not sure which to choose, learn more about installing packages.

Source Distributions

No source distribution files available for this release.See tutorial on generating distribution archives.

Built Distribution

If you're not sure about the file name format, learn more about wheel file names.

pycim_simulator-0.1.3.20251009b0-py3-none-any.whl (17.9 kB view details)

Uploaded Python 3

File details

Details for the file pycim_simulator-0.1.3.20251009b0-py3-none-any.whl.

File metadata

File hashes

Hashes for pycim_simulator-0.1.3.20251009b0-py3-none-any.whl
Algorithm Hash digest
SHA256 0748027dee53830e645ed5ccb56e461998acffc2d4fee52eb190fca25041b29b
MD5 fa1ed745cc2acfd50dc7b974e99094ac
BLAKE2b-256 152f0e30b6e9173a0e25828c50462cb61027813b25f5060de781155d558eb1f4

See more details on using hashes here.

Supported by

AWS Cloud computing and Security Sponsor Datadog Monitoring Depot Continuous Integration Fastly CDN Google Download Analytics Pingdom Monitoring Sentry Error logging StatusPage Status page