🔬

hybrid-quantum-classical

Combine the power of quantum and classical computing. Learn how hybrid algorithms like QAOA and VQE solve problems neither computer could solve alone.

🔬 今すぐ試す

これは何?

🎯 シミュレーターのヒント

📚 用語集

NISQ
ノイズの多い中間スケール量子 - 量子コンピューティングの現在の時代
VQE
変分量子固有ソルバー - 化学用アルゴリズム
QAOA
量子近似最適化アルゴリズム
Ansatz
パラメータ化された試行波動関数/回路
Variational
古典的に最適化された調整可能なパラメータを使用したアプローチ
BarrenPlateau
勾配が消滅するほど小さくなる領域
Hamiltonian
システムエネルギーを表す数学演算子
GroundState
量子系の最低エネルギー状態
ExpectationValue
平均的な測定結果
Qubit
量子ビット - 量子情報の基本単位

💬 学習者へ

{'encouragement': "You're learning the computing paradigm of the near future. Hybrid quantum-classical isn't science fiction - it's being used right now by researchers and companies worldwide.", 'reminder': "You don't need a quantum computer to learn. Simulators can teach you everything until you're ready for real hardware.", 'action': 'Run a VQE simulation in the simulator. Watch how the classical optimizer works with the quantum circuit. See the energy converge to the ground state.', 'dream': 'A quantum algorithm designer from Kenya might create the breakthrough algorithm for drug discovery. A software engineer from Nigeria might build better hybrid frameworks. Quantum computing needs global participation.', 'wiaVision': "WIA Pin Code believes quantum computing should not be limited to wealthy nations. By making hybrid algorithms accessible, we're democratizing the future of computing."}

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