Aprender: el plan de estudios
Un recorrido ordenado, no un archivo de blog. Empieza con la intuición del álgebra lineal, el prerrequisito real que la mayoría de los recursos omiten, y termina con lo que las computadoras cuánticas no pueden hacer de forma demostrable. Los prerrequisitos se indican; tu posición se registra en tu navegador.
Los marcadores rellenos son los pasos que ya has superado; el anillo con contorno es donde estás ahora. Las flechas muestran los prerrequisitos. Toca cualquier paso para ir directamente a él.
Linear algebra intuition
Vectors, bases, matrices as transformations, and tensor products. The ACTUAL prerequisite for quantum computing, which most resources skip.
Tomasz Kawalec · CC BY-SA 4.0 ↗
Qubits and superposition
From the definite bit to the amplitude-carrying qubit. Why '0 and 1 at the same time' is a shortcut, not the truth.
Requisitos previos: linear algebra intuition
Measurement
One classical outcome per shot; the distribution is the output. Why looking changes things, and why algorithms repeat.
Requisitos previos: qubits superposition
Entanglement
Joint structure no independent description reproduces: a resource, not a faster-than-light telephone.
Requisitos previos: measurement
NIST · Public domain ↗
Gates and circuits
X, Z, H, rotations and CNOT; circuits as time-ordered choreography; why compilation to real hardware changes everything.
Requisitos previos: qubits superposition
A. Tonomura / Belsazar · CC BY-SA 3.0 ↗
Interference: the actual source of advantage
Wrong answers cancel, right answers reinforce. The one-sentence truth of quantum speedup lives here.
Requisitos previos: gates circuits
The major algorithms
Deutsch-Jozsa for intuition, Grover for search, Shor for cryptography: each with its honest reality check.
Requisitos previos: interference
Decoherence and noise
Why qubits are divas, what T1/T2 mean, and why the useful life of quantum information is finite.
Requisitos previos: gates circuits
Error correction and logical qubits
Many noisy physical qubits become one dependable logical qubit, and 'below threshold' becomes the field's honest scoreboard.
Requisitos previos: decoherence noise
What quantum computers provably cannot do
The most common misconception in the field, treated head-on: quantum computers do NOT try all answers in parallel. Interference is the mechanism.
Requisitos previos: interference, major algorithms
¿Prefieres que te guíen paso a paso? La Academia ofrece esta misma estructura como tres cursos evaluados (Principiante, Intermedio, Avanzado) con verificaciones de conocimiento y proyectos finales.
Abrir la Academia →