Foundations of Mathematical Methods in Nanophotonics
Learn the core mathematical principles of electromagnetism in structured media to understand and design photonic crystals and optical devices.
-
๐ฌ
AI instructor
Ask about any lesson and get a clear answer instantly, anytime. -
๐
Start anytime
No schedules or deadlines โ learn at your own pace, whenever suits you. -
๐
In English
Lessons, tasks and certificate โ all fully in your language.
About this course
How do we control light on the scale of a single wavelength? To design modern optical devices, you must understand the mathematical framework that governs electromagnetism in structured materials. This course provides a clear, accessible entry point into the physics and mathematics of nanophotonics, bridging the gap between classical electromagnetism and solid-state physics. You will transition from a basic understanding of wave equations to analyzing complex optical phenomena like photonic band gaps, slow light, and waveguiding. By studying the mathematical structures behind these behaviors, you will gain the theoretical tools needed to model, analyze, and predict how light behaves in nanostructured media. What you'll learn: Understand the foundational concepts of electromagnetism, Maxwell's equations, and wave propagation in structured media; Apply linear algebra and eigensystem formulation to solve electromagnetic wave equations; Use Bloch's theorem to analyze periodic structures and calculate photonic band gaps; Explore group theory and symmetry principles to predict optical behavior and conservation laws; Analyze optical systems using perturbation methods and coupled-mode theory; Study modern computational formulations and inverse design concepts used in contemporary nanophotonics research. This course begins with essential terminology and the basic physics of light-matter interaction before guiding you through the algebraic and perturbation methods used to solve real-world optical problems. Through structured written explanations, mathematical proofs, and conceptual exercises, you will build a solid theoretical foundation. This program is designed for beginners in applied mathematics, physics, or engineering who want to explore nanophotonics without requiring advanced prior knowledge. Start reading today to unlock the mathematical secrets of structured light.
What you'll get
-
๐
Certificate of completion
Add it to your LinkedIn profile -
๐ฌ
Personal AI tutor
Stuck on a lesson? Ask your built-in tutor anything, any time. -
โพ๏ธ
Lifetime access
Come back anytime, no expiry -
๐ฑ
Phone or computer
Works anywhere, any device -
๐ธ
14-day refund
No questions asked -
โก
Short & focused
2h 54m of practical content
Reviews
No reviews yet โ be the first to share your experience.
Learners also took
๐ผ Job-ready
๐ With certificate
Foundations of Physical Chemistry: Core Principles
Certificate
Hands-on
70,00 lei
→
๐ With certificate
Solar Cell Fundamentals: From Physics to Practical Systems
Certificate
Hands-on
70,00 lei
→
๐ฅ In demand
๐ With certificate
Electrodynamics: Solving Maxwell's Equations and Wave Systems
Certificate
Hands-on
70,00 lei
→
๐ With certificate
Fundamentals of Acoustics: Waves, Vibrations, and Impedance
Certificate
Hands-on
70,00 lei
→
Frequently asked
What do I need to take this course? +
Just a phone or computer with internet. No installs, no special hardware.
How do I pay? +
By card via Stripe. We donโt store card details โ Stripe handles them securely.
Can I get a refund? +
Yes โ full refund within 14 days, no questions asked.
How long will I have access? +
Forever. Once you purchase, the course is yours to revisit anytime.
Will I get a certificate? +
Yes. On completion you'll receive a certificate you can add to your LinkedIn profile.
Built for learners in
Tech
Design
Finance
Marketing
Healthcare
Education
Hospitality
Manufacturing