genpark-quantum-teleportation-entanglement-circuit-skill
Click on "Deploy Server".
Wait a few minutes for the server to deploy. Once ready, it will show a "Started" state.
In the chat, type
@followed by the MCP server name and your instructions, e.g., "@genpark-quantum-teleportation-entanglement-circuit-skillsimulate a Bell pair circuit and show measurement counts"
That's it! The server will respond to your query, and you can continue using it as needed.
Here is a step-by-step guide with screenshots.
genpark-quantum-teleportation-entanglement-circuit-skill
⚡ Overview & Architectural Significance
genpark-quantum-teleportation-entanglement-circuit-skill delivers zero-dependency quantum circuit simulation, qubit state vector evolution, Born-rule measurement, and Grover amplitude amplification engineered strictly using Python 3.9+ standard library.
🌟 Key Architectural Capabilities
Zero External Dependencies: Operates exclusively via pure Python (
math,cmath,random,json). Zero Qiskit/Cirq C++ compilation overhead.Enterprise Quantum Invariants: Implements formal complex state vectors, unitary Hadamard and CNOT entanglement gates, Born rule projective measurement sampling, EPR Bell state generation, and Grover diffusion operators.
Native Anthropic MCP Protocol: Compliant with standard JSON-RPC 2.0 stdio MCP specifications for Claude Desktop, Cursor, and Windsurf.
Related MCP server: genpark-quantum-gate-hadamard-pauli-cnot-engine-skill
🏗️ Architectural Topology & State Machine
flowchart TD
InitialRegister["Qubit Register |0...0>"] --> GateLayer["Unitary Gate Operations (H, Pauli, Phase)"]
GateLayer --> EntanglementGate["Two-Qubit Entangling CNOT Gate"]
EntanglementGate --> GroverOracle["Phase Inversion & Grover Diffusion"]
GroverOracle --> ProjectiveMeasurement["Born's Rule Collapse & Shot Sampler"]
ProjectiveMeasurement --> QuantumTelemetry["Classical Quantum Bitstring Telemetry"]🚀 Quickstart & Standalone Execution
Local Python Client Usage
from client import BellStateEntanglementCircuit
# Initialize engine
engine = BellStateEntanglementCircuit()
# Execute self-testing benchmark suite
result = engine.benchmark_bell_pair()
print("Execution Result:", result)🔌 One-Click MCP Integration (Claude Desktop / Cursor)
Add to your claude_desktop_config.json or cursor.json:
{
"mcpServers": {
"genpark-quantum-teleportation-entanglement-circuit-skill": {
"command": "python",
"args": ["-u", "/path/to/genpark-quantum-teleportation-entanglement-circuit-skill/mcp_server.py"]
}
}
}📦 Smithery.ai & PyPI Deployment
This skill contains pre-configured smithery.yaml and pyproject.toml manifests. Install directly via pip:
pip install git+https://github.com/alphaparkinc/genpark-quantum-teleportation-entanglement-circuit-skill.gitThis server cannot be deployed
Maintenance
Related MCP Connectors
Build and publish Overskill apps from Cursor, Claude, ChatGPT, or any MCP client.
Build, run and publish 3D games in the Zero engine from Claude Code, Cursor or Codex, over MCP.
- QuallaaOAuthcom.quallaa
Talk to your public-facing AI from any MCP client — Claude, ChatGPT, Cursor, Cline, Windsurf.
Shared memory and actions for Claude, Kiro, OpenAI, Cursor, and other MCP-compatible AI clients.
Related MCP Servers
- AlicenseNot gradedqualityBmaintenanceEnables users to simulate multi-qubit quantum circuits through an MCP interface, including unitary gates, entanglement, Born-rule measurement sampling, fidelity/probability calculations, and Grover amplitude amplification. Integrates with Claude Desktop, Cursor, and Windsurf via JSON-RPC stdio.7MIT
- AlicenseNot gradedqualityBmaintenanceEnables simulation of quantum circuits with single-qubit Hadamard and Pauli gates, CNOT entanglement, state-vector evolution, Born-rule measurement, Bell-state generation, and Grover amplitude amplification. Integrates natively with MCP clients for zero-dependency quantum gate execution.7MIT
- AlicenseNot gradedqualityBmaintenanceEnables zero-dependency quantum circuit simulation with qubit state-vector evolution, Hadamard/Pauli/CNOT gates, Born-rule measurement, Bell state generation, and Grover amplitude amplification via MCP.7MIT
- AlicenseNot gradedqualityBmaintenanceEnables users to simulate quantum circuits, evolve qubit state vectors, generate EPR Bell pairs, perform Born-rule measurement, and run Grover amplitude amplification through a zero-dependency MCP interface.7MIT