Simulating Nanostructure Band Structures with Matlab
Learn to model the electronic properties of graphene and carbon nanotubes by building tight-binding simulations and E-K diagrams in Matlab.
About this course
Computational nanotechnology allows us to predict how materials behave at the atomic scale before they are ever fabricated. If you want to understand how materials like graphene conduct electricity, learning to simulate their electronic band structures is the essential first step.
This course guides you through the fundamental physics and coding techniques needed to simulate nanostructures. You will transition from understanding basic quantum concepts to writing clean, efficient Matlab scripts that calculate energy dispersion relations (E-K diagrams) for real-world nanomaterials.
What you'll learn:
- Understand the core quantum mechanical principles behind tight-binding models.
- Calculate and plot E-K diagrams for graphene and carbon nanotubes.
- Write structured Matlab code to construct Hamiltonian matrices for atomic lattices.
- Apply vectorized matrix operations in Matlab to optimize simulation performance.
- Analyze how structural changes in nanostructures affect their electronic conductivity.
The course starts with foundational solid-state physics definitions before guiding you step-by-step through translating mathematical equations into working Matlab code. You will explore physical models, write simulation scripts, and interpret the resulting electronic properties through structured written explanations and code examples.
This course is designed for students, researchers, and beginners in nanotechnology or computational physics. No prior simulation experience is required, though a basic familiarity with Matlab and matrix algebra will help you get the most out of the material.
Start exploring the quantum world through code and begin simulating advanced materials today.
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. -
๐ง
Audio version included
Learn on the go โ no screen needed -
โพ๏ธ
Lifetime access
Come back anytime, no expiry -
๐ฑ
Phone or computer
Works anywhere, any device -
๐ธ
30-day refund
No questions asked -
โก
Short & focused
1h 24m of practical content
Reviews
No reviews yet โ be the first to share your experience.
Learners also took
Develop a foundational understanding of quantum mechanics, applying conceptual ideas and operator techniques to explore modern quantum technologies.
$4.99
Explore the fundamental principles of radio waves and how they power modern wireless communication, from smartphones to household appliances.
$4.99
Master the principles of magnetic fields, induction, and wave propagation to build a solid foundation in physical sciences.
$4.99
Master essential physics concepts and learn to solve exam-style questions to confidently prepare for the Federal Highway Police competitive selection process.
$4.99
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, or with cryptocurrency. We do not store card details โ Stripe handles them securely.
Can I get a refund? +
Yes โ full refund within 30 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