# QuEra Computing

**Canonical:** https://apis.io/providers/quera-computing/  
**Website:** https://www.quera.com/  
**APIs profiled:** 8

QuEra Computing is a Boston-based neutral-atom quantum computing company (founded 2018) that operates Aquila, a 256-qubit Analog Hamiltonian Simulation QPU available publicly through Amazon Braket, and Gemini-class, a 260-qubit gate-model neutral-atom system used for fault-tolerant logical-qubit research with Harvard and MIT. QuEra has no native public REST API; developers submit programs to Aquila through the AWS Braket task API using QuEra's Bloqade SDKs (bloqade-analog for Python hardware submission, Bloqade.jl for Julia emulation, bloqade-circuit for gate-model programs), built on the Kirin compiler IR. Additional open-source tools include tsim (QEC circuit sampling), bloqade-shuttle, bloqade-lanes, and bloqade-decoders for the Dynamic Qubit Array compilation stack.

## Kin Score — 18.9 / 100 (emerging)

Scored 2026-08-25 under rubric 0.14.0. Trend: flat (+0.0 from 18.9).

| Facet | Score |
|---|---|
| Discoverability | 64.8 |
| Contract Quality | 0.0 |
| Governance | 0.0 |
| Contract Governance | 0.0 |
| Operational Transparency | 2.6 |
| Developer Ergonomics | 50.0 |
| Commercial Clarity | 10.5 |
| Access Clarity | 10.5 |

## Agent readiness — 0.0 (human-only)

| Dimension | Value |
|---|---|
| Spec Presence | no |
| Agentic Access | no |
| Reversibility Documented | no |
| MCP Server | no |
| Auth Clarity | no |
| Idempotency | no |
| Error Semantics | no |
| OpenAPI Examples | no |
| Rate Limit Signal | no |
| Event Surface Described | no |
| Agent Skills | no |
| Well Known Catalog | no |
| Consent Identity | no |
| Agent Card | no |
| Dry Run Mode | no |
| Delegated Identity | no |
| Protected Resource Metadata | no |
| Dynamic Client Registration | no |
| Agentic Commerce | no |

## Access

Unknown — onboarding: unknown, pricing: unknown, trial: no (confidence: low).

## APIs (8)

- **QuEra Aquila on AWS Braket** — Aquila is QuEra's 256-qubit neutral-atom quantum computer, the first publicly accessible neutral-atom QPU. It runs Analog Hamiltonian Simulation (AHS) programs and is accessed p...
- **QuEra Gemini Neutral-Atom Quantum Computer** — Gemini-class is QuEra's gate-model neutral-atom quantum computer with 260 Rubidium-87 physical qubits, all-to-all connectivity across two operational zones (storage and entangle...
- **Bloqade Analog Python SDK** — Bloqade Analog (pip install bloqade-analog) is QuEra's Python SDK for writing, simulating, and submitting analog Hamiltonian programs to QuEra neutral-atom QPUs. It provides a h...
- **Bloqade Circuit Python SDK** — Bloqade Circuit is the gate-model eDSL component of the Bloqade family, built on the Bloqade Core eDSL infrastructure (Apache-2.0). It targets logical/gate-model programs for ne...
- **Bloqade.jl Julia SDK** — Bloqade.jl is QuEra's Julia package for quantum computation and quantum simulation based on the neutral-atom architecture. It is emulation-first, supporting large analog Hamilto...
- **Kirin Kernel IR Infrastructure** — Kirin (Kernel Intermediate Representation Infrastructure) is QuEra's Python compiler framework that underpins the Bloqade Core and Bloqade Circuit eDSLs. It provides a typed IR ...
- **tsim Universal QEC Simulator** — tsim is QuEra's open-source fast universal quantum circuit sampler for QEC based on ZX stabilizer rank decomposition. Released April 2026 alongside the paper "Tsim: Fast Univers...
- **Bloqade Shuttle and Lanes Compilation SDKs** — Bloqade Shuttle is the SDK for simulating and running neutral-atom programs with explicit atom movement; Bloqade Lanes is the atom-shuttle compiler for fixed-lane architectures;...

## Security (1)

- **Quera Computing Domain Security** — TLSv1.3 · HSTS · DMARC

## Tags

Quantum Computing, Neutral Atom, Analog Hamiltonian Simulation, AWS Braket, Aquila, Gemini, Fault Tolerance, Quantum Error Correction, Bloqade, Hardware

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Profiled by [API Evangelist](https://apievangelist.com) and published on [APIs.io](https://apis.io/providers/quera-computing/). Scores are computed from the provider's own public artifacts under a published rubric.
