Hướng dẫn của bạn về điện toán lượng tử.
0%
Menu
Lượng tử là gì? Công nghệ Các Máy Tính Lượng Tử Khác Nhau Thay đổi thế giới Câu Chuyện Bảo Mật Bức tranh đầu tư Học (chương trình học) Công ty Ứng dụng Từ điển thuật ngữ Dòng thời gian Đánh giá Tuyên bố Khóa học Quantum, But Friendly Inside a Quantum Computer Quantum in the Real World Quantum Computing Foundations Quantum Circuits, Algorithms, and Industry Fault-Tolerant Quantum Computing and Technical Strategy Tiến độ của tôi Tin tức FAQ Tài nguyên bổ sung Hỏi về Lượng tử AI Agents ★ Đã lưu
Giới thiệu Về chúng tôi Phương pháp Liên hệ Tuyên bố miễn trách
Tiến độ của tôi
0%

Tò mò về Lượng tử

Xem toàn bộ tiến độ
LƯU TIẾN ĐỘ CỦA BẠN

Progress lives in this browser and is lost if you log out or clear it: unless you save it with your email. Same email on any device = same progress.

Chế độ tối

Chế độ Hướng dẫn
Mới làm quen với tất cả điều này? Chúng tôi thêm các gợi ý và nhắc nhở dễ hiểu khi bạn học. Cùng bài học đó, nhưng có thêm hỗ trợ tích hợp sẵn.

Chế độ Chuyên gia
You just want the lessons: clean, fast and compact, with no extra reminders. This is the default view.

Ngôn ngữ giao diện

Quantum Circuits, Algorithms, and Industry · Mô-đun 5/8: Canonical Quantum Algorithms

Mục tiêu học tập
  • Explain the core ideas in canonical quantum algorithms.
  • Apply the concepts to a small circuit or business/technical evaluation.
  • Identify limitations and appropriate benchmarks.
Tap Next (or use your arrow keys) to move one idea at a time. A fixed three-question check waits at the end: the course's own checkpoint, same questions every attempt. The ← up top exits whenever you like; progress keeps.

Grover amplitude amplification

Grover's algorithm searches an unstructured space of N candidates in O(√N) oracle calls. It prepares a superposition, marks target states by phase, and repeatedly reflects amplitudes to amplify the target.

Grover provides a quadratic (not exponential) speedup and assumes an efficient oracle.

Quantum phase estimation

Phase estimation extracts an eigenphase of a unitary when supplied an eigenstate. It underlies order finding, energy estimation, and many fault-tolerant algorithms. Its precision requirements drive circuit depth and qubit resources.

Phase estimation is a central bridge between quantum dynamics and useful numerical answers.

Shor and cryptography

Shor's algorithm reduces factoring and discrete logarithms to period finding and phase-estimation-like procedures. It threatens RSA and elliptic-curve cryptography on sufficiently large fault-tolerant hardware.

The algorithm is known; the remaining uncertainty is the engineering scale and timing of a cryptographically relevant machine.

Applied activity

Complete a simulator or analysis exercise: reproduce the lesson's central example, record assumptions and outputs, and explain one source of error or limitation.

Kiểm tra mô-đun: Canonical Quantum Algorithms

3 questions: drawn fresh from the bank every attempt. Pass mark 60%. Unlimited retakes.

Đọc toàn bộ nội dung bài học

1. Grover amplitude amplification

Grover's algorithm searches an unstructured space of N candidates in O(√N) oracle calls. It prepares a superposition, marks target states by phase, and repeatedly reflects amplitudes to amplify the target.

Grover provides a quadratic (not exponential) speedup and assumes an efficient oracle.

2. Quantum phase estimation

Phase estimation extracts an eigenphase of a unitary when supplied an eigenstate. It underlies order finding, energy estimation, and many fault-tolerant algorithms. Its precision requirements drive circuit depth and qubit resources.

Phase estimation is a central bridge between quantum dynamics and useful numerical answers.

3. Shor and cryptography

Shor's algorithm reduces factoring and discrete logarithms to period finding and phase-estimation-like procedures. It threatens RSA and elliptic-curve cryptography on sufficiently large fault-tolerant hardware.

The algorithm is known; the remaining uncertainty is the engineering scale and timing of a cryptographically relevant machine.

4. Applied activity

Complete a simulator or analysis exercise: reproduce the lesson's central example, record assumptions and outputs, and explain one source of error or limitation.

Quantum, But Friendly

How Small Is Small?The Spinning CoinBit vs QubitSpooky Friends Bài kiểm tra cuối khóa

Inside a Quantum Computer

The Golden ChandelierHow It ThinksGood At, Bad At Bài kiểm tra cuối khóa

Quantum in the Real World

Quantum You Already OwnThe Great Quantum RaceFollowing the Quantum Money Bài kiểm tra cuối khóa

The Academy

Quantum Computing FoundationsQuantum Circuits, Algorithms, and IndustryFault-Tolerant Quantum Computing and Technical Strategy Toàn bộ chương trình học

Câu trả lời nhanh

Từ điển thuật ngữFAQ Tài nguyên bổ sungHỏi về Lượng tử Tin tức Lượng tử