EdX

Fiber Optic Communications (edX)

Offered by Purdue University, PurdueX,
Fiber Optic Communications (edX)

Learn about the fundamentals of fiber optic communications, with emphasis on the historical background, current practice, and future directions. This course will aim to introduce students to the fundamentals of fiber optic communications, which constitute the backbone of the internet.

Class Deals by MOOC List - Click here and see EdX's Active Discounts, Deals, and Promo Codes.

The course will start with a refresher on the operation of key components needed for an effective fiber optic communication system, and then show how these components interact at a system level. Finally, the course will conclude with outlook for future research in extending the capabilities of these networks to higher bandwidths and quantum-secured communications.
Students taking this course will be required to complete four (4) proctored exams using the edX online Proctortrack software.

This course is part of the Nanoscience and Technology MicroMasters program.

What you'll learn

  • wave propagation, dispersion, and loss
  • optical transmitters and receivers: materials, sources, modulation, speed limitations
  • fundamental concepts in optical communication networks: power, noise, and speed
  • current optical communication network architectures: TDM, DWDM, QPSK, QAM
  • future optical networks: fiber-to-the-home, data centers, quantum key distribution

Syllabus

Week 1: Optical Fibers

  • Overview and Introduction
  • Multi-Mode/Single-Mode Fibers
  • Graded Index (GRIN) and Step Index Fibers
  • Fiber Equations and Networking
  • Fiber Modes
  • System Components
  • Modulation
  • Multiplexing
  • Optical Transmitters
  • Einstein Coefficients
  • Semiconductor Photonics
  • Light Emitting Diodes

Week 2: Optical Transmitters and Receivers

  • Lasers
  • Laser Principles
  • Laser Transitions
  • General Rate Equations
  • Semiconductor Lasers
  • Amplification
  • Lasing Conditions
  • Quantum Confinement
  • Functionality

Week 3: Fundamental Concepts in Optical Communications

  • Optical Telecommunications System Limitations
  • Links
  • System Limitations
  • Optical Amplifiers
  • Principles
  • Hardware

Week 4: Current Optical Communication Network Architecture

  • Wavelength Division Multiplexing
  • WDM Principles
  • WDM Hardware
  • Hybrid Packet/Optical Networks
  • Modulation Formats
  • CDM, TDM
  • ASK, PSK, and FSK

Week 5: Future Optical Networks

  • Networking Growth
  • Upgrading Existing Network Hardware
  • Improved Communications Protocols
  • Novel Network Concepts
  • On-Chip Interconnects
  • Guided-Wave Interconnects
  • Photonic Crystals
  • Photonic Waveguides
  • Photonic Slabs
  • Quantum Cryptography
  • Classical Cryptography
  • Quantum Key Distributions
  • Quantum Networks
  • Quantum Networking Fundamentals
  • Quantum Repeaters
  • Quantum Teleportation
  • Quantum Computation
Go to Class
MOOC List is learner-supported. When you buy through links on our site, we may earn an affiliate commission.

Related Courses

Supply Chains for Manufacturing: Capacity Analytics (edX) EdX
MIT,MITx

Supply Chains for Manufacturing: Capacity Analytics (edX)

Learn about various models, methods and software tools to help make better decisions for system design in manufacturing systems and supply chains. You will learn about frameworks and models for structuring key system design issues and trade-offs that arise in today’s supply chains and manufacturing systems.

Aug 11th 2026
5-12 Weeks
Introduction to Acoustics (Part 2) (Coursera) Coursera
Korea Advanced Institute of Science and Technology - KAIST

Introduction to Acoustics (Part 2) (Coursera)

Learners might have learned the basic concepts of the acoustics from the ‘Introduction to Acoustics (Part 1).’ Now it is time to apply to the real situation and develop their own acoustical application. Learners will analyze the radiation, scattering, and diffraction phenomenon with the Kirchhoff –Helmholtz Equation. Then learners will design their own reverberation room or ducts that fulfill the condition they have set up.

Aug 10th 2026
5-12 Weeks
Nanophotonic Modeling (edX) EdX
Purdue University,PurdueX

Nanophotonic Modeling (edX)

Learn a comprehensive set of simulation techniques to predict the performance of photonic nanostructures. This engineering course is an introduction to photonic materials and devices structured on the wavelength scale. Generally, these systems will be characterized as having critical dimensions at the nanometer scale. These can include nanophotonic, plasmonic, and metamaterial components and systems.

Feb 12th 2024
5-12 Weeks
Geology and Engineering Geology | 工程地质学 (edX) EdX
Tsinghua University,TsinghuaX

Geology and Engineering Geology | 工程地质学 (edX)

Learn the basics of geology and geological engineering as we explore ways to both protect and properly utilize the earth’s resources today and in the future. The earth is our home. The development of human civilization as we know it goes hand in hand with how we have used and continue to reshape the planet. This course will introduce the basic knowledge of geology and methods of engineering geology to help people protect and utilize our earth more effectively.

Self Paced
Self-Paced
The Engineering of Structures Around Us (edX) EdX
DartmouthX,Dartmouth College

The Engineering of Structures Around Us (edX)

Explore how engineers design bridges and buildings in our communities and iconic structures around the world. In this introductory course, you’ll learn some engineering principles that can be applied to structural systems everywhere: in nature, in furniture, in mechanical and aerospace systems, and in any solid object that resists a load. Together we’ll explore how structures work, why they were designed the way they were designed, how they support loads, and where forces flow through them.

Self Paced
Self-Paced
Electrotechnique II (edX) EdX
École Polytechnique Fédérale de Lausanne,EPFLx

Electrotechnique II (edX)

Découvrez les systèmes alternatifs triphasés et leurs charges associées ainsi que les régimes transitoires, base des alimentations à découpage. Ce cours traite des systèmes alternatifs triphasés, piliers de l'alimentation électrique industrielle et de certains types de machines électriques. Les charges triphasées associées, symétriques ou dissymétriques, seront étudiées ainsi que les puissances actives, réactives et apparentes qui en découlent. Des méthodes de compensation de la puissance réactive seront développées.

Self Paced
Self-Paced
Caer o No caer. El secreto de las estructuras (edX) EdX
Universidad Carlos III de Madrid - UC3M,UC3Mx

Caer o No caer. El secreto de las estructuras (edX)

Las estructuras están presentes en todos los sistemas que nos rodean. Descubrirlas y comprender cómo funcionan es sencillo y fascinante. Las estructuras están implicadas en nuestras vidas: las plantas, los animales, casi todo lo que fabrica el ser humano, incluso nuestro propio cuerpo, deben soportar una serie de fuerzas sin romperse, y por lo tanto prácticamente cualquier elemento de nuestro entorno es una estructura de una clase u otra.

Self Paced
Self-Paced
The Basics of Transport Phenomena (edX) EdX
Delft University of Technology,DelftX

The Basics of Transport Phenomena (edX)

Learn the basic framework to work on a broad spectrum of engineering problems concerning transfer of heat, mass and momentum. Learn through examples of everyday processes at home, in the lab and in industry. Have you ever wondered why ventilation helps to cool down your hot chocolate? Do you know why a surfing suit keeps you warm? Why iron feels cold, while wood feels warm at room temperature? Or how air is transferred into aqueous liquids in a water treatment plant? How can we sterilize milk with the least amount of energy? How does medicine spread in our tissue? Or how do we design a new cooling tower of a power plant? All these are phenomena that involve heat transfer, mass transfer or fluid flow.

Self Paced
Self-Paced
Electronique I (edX) EdX
École Polytechnique Fédérale de Lausanne,EPFLx

Electronique I (edX)

Introduction à l’électronique analogique- première partie. Fonctions de base réalisées à l’aide des amplificateurs opérationnels. Ce cours est un cours d’introduction à la réalisation des fonctions linéaires et non-linéaires de base à l’aide de l’amplificateur opérationnel.



Self Paced
Self-Paced
Fundamentals of Current Flow (edX) EdX
Purdue University,PurdueX

Fundamentals of Current Flow (edX)

Gain a new perspective on electron flow in solids with this insightful introduction. Very different from what is taught in standard courses, "Fundamentals of Current Flow" provides a unified conceptual framework for ballistic and diffusive transport of both electrons and phonons - essential information for understanding nanoelectronic devices.

Jan 8th 2024
5-12 Weeks