Skip to main content
Graph
Search
fr
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Practice
Publications
Startups
Units
Show all results for
Home
Lecture
Introduction to Time-Dependent Perturbation Theory
Graph Chatbot
Related lectures (31)
Previous
Page 3 of 4
Next
Quantum Computation: Mechanisms and Advantages of Restricted Models
Covers the mechanisms behind quantum computation and explores the advantages of restricted computational models.
Quantum Simulation with Cold Atoms
Covers the principles of quantum simulation with cold atoms, including optical dipole potentials and Feshbach resonances.
Quantum Bosons: Second Quantification
Explores perturbation theory, proper states, undegenerated states, and problem-solving in quantum bosons.
Quantum Qubits: Understanding the Basics
Covers the basics of quantum qubits, including abstract qubits, states, measurement, and evolution in quantum computation.
Transition Probabilities in Perturbation Theory
Explores transition probabilities in first-order perturbation theory with time-dependent perturbations and disturbance theory.
Quantum Probability Basics
Covers the fundamentals of quantum probability and binary linear systems.
Quantum Information Principles
Covers the mathematical principles of quantum physics, including Hilbert spaces and quantum bits.
Quantum Information: Principles and Applications
Explores quantum information principles, including Larmor precession and quantum states evolution in magnetic fields.
Qubits: Understanding Quantum States and Operations
Covers the fundamentals of qubits, including their states, superposition, and operations in quantum mechanics.
Quantum Mechanics: Spatial Interference and Coupling
Covers quantum mechanics exercises on spatial interference and coupling between oscillators, emphasizing independent problem-solving and the implications of measurement in quantum systems.