PRODUCT MANUAL

QuantumSafe Circuit Studio
Technical usage guide

Build and execute small quantum circuits in the browser, inspect amplitudes and probabilities, and connect quantum-computing concepts to PQC migration decisions.

OVERVIEW

QuantumSafe Circuit Studio

Executives, architects and developers need a safe hands-on environment to understand quantum gates, measurement and why public-key migration is different from simply increasing key sizes.

WORKFLOW

  1. 01 Choose a qubit count and initial |0…0> state
  2. 02 Add X, H, Z and controlled-NOT operations
  3. 03 Compile the textual circuit into ordered gate instructions
  4. 04 Execute a state-vector simulation in the browser
  5. 05 Inspect basis-state probabilities and dominant outcomes
  6. 06 Save the circuit lesson with expected learning objectives

COMPONENT REFERENCE

COMPONENT ARCHITECTURE

A state-vector engine at the center of an educational, browser-based analysis environment.

Creation, execution, inspection and learning capabilities surround the simulation engine without implying a production quantum-computing backend.

State-vector simulation workspace
02

State-Vector Engine

Executes the approved circuit model and produces deterministic amplitudes or measurement-ready state data.

EXECUTION CORE
01

Circuit Editor

Builds circuits from supported gates, qubit registers and controlled operations with import/export support.

CREATION
03

Probability Inspector

Visualizes amplitudes, probabilities and measurement outcomes without claiming hardware-equivalent noise behavior.

ANALYSIS
04

Gate Reference

Documents supported gates, matrices, parameters and controlled-operation behavior for repeatable exercises.

KNOWLEDGE
05

Learning Scenarios

Provides prepared circuits, guided exercises and expected outcomes for training and architecture workshops.

EDUCATION
06

PQC Context Layer

Connects simulation concepts to quantum-threat and PQC migration education without implementing PQC inside the circuit engine.

SECURITY CONTEXT

INTERFACES

  • Browser-only simulator
  • Text circuit syntax
  • JSON lesson export
  • Gate cheat sheet
  • Local execution
  • Academy course linkage

LIMITATIONS & ACCEPTANCE

  • The included preview is an educational state-vector simulator, not quantum hardware and not a cryptanalytic tool.
  • Browser memory and performance limit the practical qubit count; the demo intentionally enforces a bounded maximum.
  • Results illustrate ideal gates and do not model all hardware noise or fault-tolerance behavior.