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技术 / 量子计算机

量子计算机

这台机器究竟是什么、每次量子计算所经历的六个步骤,以及比量子比特数量更重要的评估指标。

Mostly a very fancy fridge

The famous golden chandelier is almost entirely a cooling system; the quantum chip is smaller than a fingernail and hangs at the bottom, at about 0.01 degrees above absolute zero. Qubits are fragile (the tiniest heat or vibration "measures" them by accident and collapses their state (decoherence)) so cold, quiet isolation is the price of computation. The full story of what a quantum computer is and is not: start here.

How a quantum computation works: the six-step sequence

  1. Initialize qubits in a known state, commonly |0…0⟩.
  2. Apply gates that create superposition and encode the problem.
  3. Entangle qubits so the register can represent correlations among variables.
  4. Apply phase transformations and interference steps that amplify useful outcomes.
  5. Measure the qubits, producing a classical bit string.
  6. Repeat the circuit many times and use classical processing to estimate probabilities, energies, gradients, or candidate solutions.

Gates are reversible linear transformations. The Hadamard gate creates superposition, rotation gates change amplitudes and phase, and controlled gates like CNOT create entanglement. A circuit is a time-ordered sequence of these operations. The mechanism doing the real work is interference: amplitudes of wrong answers are arranged to cancel while right answers reinforce.

Why algorithms matter more than raw qubit count

A processor with many qubits is not automatically more useful. The algorithm must fit the hardware and beat a strong classical baseline at an economically relevant task. The metrics that actually describe a machine:

指标它意味着什么为何重要
Physical qubitsIndividual hardware qubitsLarge counts can still be noisy
Logical qubitsError-corrected qubits presented to algorithmsCloser to the useful computational resource
Gate fidelityProbability a gate behaves correctlyErrors compound across deep circuits
Coherence timeHow long quantum information persistsLimits circuit duration
ConnectivityWhich qubits can directly interactPoor connectivity adds routing overhead
Circuit depthNumber of sequential gate layersDeep algorithms require lower error rates
Benchmark suitesComposite performance indicatorsNo single metric tells the full story

投资者视角: 该表格中的每项指标都是一个尽职调查问题。"有多少量子比特?"可在新闻稿中找到答案;"逻辑错误率和电路深度是多少?"则需要在论文中寻找。完整的核查清单请见 评估声明.

深入了解(每篇约5分钟)

量子比特单位的准确含义 硬件构建量子比特的七种方式 Inside a Quantum Computer友好课程集 量子学院结构化课程,三个层级

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想让知识真正留下来? The "Inside a Quantum Computer" lessons cover this page as tap-through slides with quizzes, about 20 minutes.

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Quantum, But Friendly

How Small Is Small?The Spinning CoinBit vs QubitSpooky Friends 结课测试

Inside a Quantum Computer

The Golden ChandelierHow It ThinksGood At, Bad At 结课测试

Quantum in the Real World

Quantum You Already OwnThe Great Quantum RaceFollowing the Quantum Money 结课测试

量子学院

Quantum Computing FoundationsQuantum Circuits, Algorithms, and IndustryFault-Tolerant Quantum Computing and Technical Strategy 完整课程体系

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