Strategic Objectives
• Understand the mechanics of single-photon polarization for unbreakable keys.
• Master the BB84 and E91 protocols that define modern quantum security.
• Identify and mitigate physical hardware vulnerabilities in photon detection.
• Bridge the gap between theoretical quantum logic and real-world fiber implementation.
The Core Challenge
Traditional encryption is failing against the rise of quantum computing, leaving our global financial and private data vulnerable to total exposure.
01
The Quantum Security Mandate
02
The Qubit Foundation
03
Polarization States
04
The BB84 Protocol
05
Single-Photon Sources
06
The No-Cloning Theorem
07
Entanglement-Based QKD
08
Single-Photon Detection
09
The Measurement Problem
10
Quantum Bit Error Rate (QBER)
11
Information Reconciliation
12
Privacy Amplification
13
Fiber Optic Transmission
14
Free-Space Quantum Links
15
Decoy State Methods
16
Quantum Repeaters
17
Quantum Hacking
18
Device-Independent QKD
19
The Quantum Random Number Generator
20
Integration with Classical Nets
21