Retrieve details about a quantum circuit by providing its name, including properties and metadata.
306,652 tools. Last updated 2026-07-25 19:05
"A server for exploring information about quantum physics or quantum-related topics" matching MCP tools:
- Persist GuoJi Quantum cloud API key to local disk for authenticated access to devices and tasks.Apache 2.0
- List all available quantum backends, including devices and simulators, from the CETC-ICQ quantum cloud platform.Apache 2.0
- Search standards documentation to find technology guidance on topics like kafka, docker, and kubernetes. Returns up to 5 matching excerpts with detailed information.MIT
- Search the web for current information, news, articles, and websites to find up-to-date content, research topics, or answer questions about recent events.Apache 2.0
- Retrieve detailed information about a specific Advisor Recommendation, including impact level, likelihood, remediation steps, and related knowledge base articles.Apache 2.0
Matching MCP Servers
- Alicense-qualityAmaintenanceEnables AI agents to execute quantum circuits, generate true quantum random bits, and perform resonance recall using amplitude amplification on real quantum backends via qBraid.Last updatedMIT
- Alicense-qualityDmaintenanceAn MCP server that provides static validation and documentation lookup for quantum computing libraries, currently supporting PennyLane. It allows users to verify quantum code syntax and method usage against official library documentation to ensure correct implementation.Last updatedMIT
Matching MCP Connectors
QuantumOracle — 18 post-quantum crypto tools: Kyber, Dilithium, hybrid schemes, migration.
Scientific compute for AI agents: symbolic, numerical, quantum, chemistry, ODE. Paid via x402.
- Retrieve all known information about a topic, including linked memories, related entities, and a timeline.MIT
- Retrieve detailed information about a VPS server by providing its UUID, including status, specs, and network details.MIT
- Bake physics simulations for all objects in the scene over a specified frame range, with options for all or specific physics types.MIT
- Search web or Google Drive to find new sources for research topics, supporting both fast and deep research modes to gather information efficiently.MIT
- Initiate web or Google Drive searches to find new sources for research topics. Choose between fast or deep search modes to gather relevant information for your notebook.MIT
- Execute batch expectation estimation with a single observable to compare multiple quantum circuits against the same metric using the QPanda3 Runtime MCP Server.Apache 2.0
- Initiate web or Google Drive searches to find new sources for research topics, supporting fast or deep exploration modes.MIT
- Retrieve detailed quantum device properties including qubit count, connectivity, native gates, and operational status for quantum computing tasks.Apache 2.0
- Execute quantum circuits on QPU devices to obtain measurement outcome distributions through sampling, enabling statistical analysis of quantum computations.Apache 2.0
- Compute quantum expectation values by submitting circuits and observables to estimate ⟨ψ|O|ψ⟩ for quantum state analysis on quantum processing units.Apache 2.0
- Bind multiple quantum circuits to multiple observables for multi-objective decision analysis. This tool creates a program set to evaluate different quantum strategies against various objective dimensions in quantum computing scenarios.Apache 2.0
- Converts physics simulation data into keyframe animations for export to React Three Fiber or Remotion, enabling physics-driven video rendering.MIT
- Submit multiple quantum circuits for sampling in a single batch to improve efficiency compared to individual submissions.Apache 2.0
- List secret keys and quantum metadata for a given scope to discover existing secrets before reading or writing. Returns entries with state, expiration, and entanglement details.AGPL 3.0