EdX

The Radio Sky II: Observational Radio Astronomy (edX)

The Radio Sky II: Observational Radio Astronomy (edX)

This course covers the principles and practices of radio astronomical observations, in particular with modern interferometers. Topics range from radio telescope technology to the measurement equation to radio interferometric calibration and imaging.

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

The first part of the course introduces the different types of telescope technologies available to astronomers, with a particular focus on single-dish radio telescopes and radio interferometers. Optical, UV, X-ray, Gamma, neutrino, and gravitational wave telescopes will also be briefly covered, as well as a foray into Search for Extraterrestrial Intelligence.

We, then, dive deep into the principles of observational radio astronomy, covering the observables (flux, luminosity, brightness temperature), and the instrumentation (the radiometer equation, sensitivity calculations). Next, we describe various radio telescope technologies, as well as time-domain radio astronomy (pulsars, transients, Fast Radio Bursts). Finally, we look at different radio astronomy observatories around the world and compare their capabilities.
The rest of the course is dedicated to radio interferometric imaging. We introduce the Fourier transform and the van Cittert-Zernike theorem, and discuss the principles of aperture synthesis imaging (visibilities, sampling, point spread functions, deconvolution). We drill down into the radio-interferometer measurement equation (RIME), and use that to derive the principles of interferometric calibration and self-calibration. We also look at practical data reduction techniques, covering data inspection, flagging, basic calibration, and imaging, as well as the practical details of writing observational proposals.
The course includes a discussion of the future Square Kilometre Array radio telescope, its challenges, and projected scientific capabilities.

What you'll learn

  • Types of telescopes across the electromagnetic spectrum
  • Single-dish radio telescopes and radio interferometers
  • Basics of neutrino and gravitational wave astronomy
  • Basics of the Search for Extraterrestrial Intelligence
  • Fundamental radio astronomy observables
  • Principles of radio telescopes, radiometer equation
  • Diversity of radio telescope technologies and observatories
  • Observing pulsars, transients, and other time-domain radio astronomy
  • Principles of aperture synthesis imaging; Fourier theory
  • Visibility function, sampling, PSF, deconvolution
  • The radio interferometer measurement equation (RIME)
  • Calibration and self-calibration of radio interferometers
  • Practical data reduction, calibration, and imaging
  • Developing observational proposals for radio observatories

Syllabus

Week 1:Study of the telescope technology, focusing on optical and radio telescopes - first part.
Week 2:Study of the telescope technology, focusing on optical and radio telescopes - second part.
Week 3:Introduction to observational radio astronomy, analyzing the main units of measure and the radio telescope principles.
Week 4: Presentation of the ground rules of imaging using an interferometric array. Study of the Fourier transform, the sampling, and the van Cittert Zernike theorem.
Week 5:Examination of the cycle of radio interferometric data, from visibilities to images - first part.
Week 6: Examination of the cycle of radio interferometric data, from visibilities to images - second part.

Go to Class
MOOC List is learner-supported. When you buy through links on our site, we may earn an affiliate commission.

Related Courses

Understanding Einstein: The Special Theory of Relativity (Coursera) Coursera
Stanford University

Understanding Einstein: The Special Theory of Relativity (Coursera)

In this course we will seek to “understand Einstein,” especially focusing on the special theory of relativity that Albert Einstein, as a twenty-six year old patent clerk, introduced in his “miracle year” of 1905. Our goal will be to go behind the myth-making and beyond the popularized presentations of relativity in order to gain a deeper understanding of both Einstein the person and the concepts, predictions, and strange paradoxes of his theory.

Sep 7th 2026
5-12 Weeks
Big History - From the Big Bang until Today (Coursera) Coursera
University of Amsterdam

Big History - From the Big Bang until Today (Coursera)

Welcome to this Big History course! In this course, renowned scientists and scholars from the University of Amsterdam and beyond will take you on a journey from the Big Bang until today while addressing key questions in their fields. After completing this journey you will have developed a better understanding of how you and everything around you became the way they are today.

Sep 28th 2026
4 Weeks
Mysteries Of The Universe (FutureLearn) FutureLearn
National Tsing Hua University

Mysteries Of The Universe (FutureLearn)

Discover how more than ninety per cent of the universe is a mystery, and expand your knowledge of cosmology and astronomy. Investigate the most mysterious and fascinating aspects of the universe The more we learn about how the universe works, the more we realise how much we don’t know. What is a black hole? What is dark energy? Will the universe eventually collapse in on itself? And how does the Earth fit into all this?

Self Paced
5-12 Weeks
Astrophysics: Cosmology (edX) EdX
Australian National University - ANU,ANUx

Astrophysics: Cosmology (edX)

Exploring the origin, fate and nature of our universe. This course covers cosmology – the study of our entire universe. Where did the universe come from? How will it end? What is the nature of space and time? For the first time in human history, we can give precise, reliable answers to many cosmological questions, thanks to a spectacular series of recent breakthroughs.

Self Paced
Self-Paced
The Discovery of the Higgs Boson (FutureLearn) FutureLearn
University of Edinburgh

The Discovery of the Higgs Boson (FutureLearn)

Should we be excited about the Higgs boson? Find out more about particle physics and understanding the universe. The discovery of a new fundamental particle at the Large Hadron Collider (LHC), CERN is the latest step in a long quest seeking to answer one of physics’ most enduring questions: why do particles have mass? The experiments’ much anticipated success confirms predictions made decades earlier by Peter Higgs and others, and offers a glimpse into a universe of physics beyond the Standard Model.

Self Paced
5-12 Weeks
Quantum Detectors (edX) EdX
Purdue University,PurdueX

Quantum Detectors (edX)

Learn about quantum sensors and devices that extract maximal information from the world around us. Classical detectors and sensors are ubiquitous around us from heat sensors in cars to light detectors in a camera cell phone. Leveraging advances in the theory of noise and measurement, an important paradigm of quantum metrology has emerged. Here, ultra-precision measurement devices collect maximal information from the world around us at the quantum limit.

Feb 12th 2024
5-12 Weeks
Control of Nonlinear Spacecraft Attitude Motion (Coursera) Coursera
University of Colorado Boulder

Control of Nonlinear Spacecraft Attitude Motion (Coursera)

This course trains you in the skills needed to program specific orientation and achieve precise aiming goals for spacecraft moving through three dimensional space. First, we cover stability definitions of nonlinear dynamical systems, covering the difference between local and global stability. We then analyze and apply Lyapunov's Direct Method to prove these stability properties, and develop a nonlinear 3-axis attitude pointing control law using Lyapunov theory. Finally, we look at alternate feedback control laws and closed loop dynamics.

Sep 14th 2026
4 Weeks
Archaeoastronomy (Coursera) Coursera
Politecnico di Milano

Archaeoastronomy (Coursera)

Archaeoastronomy is the “science of stars and stones”: it studies the relationships between the ancient monuments and the sky, in order to gain a better understanding of the ideas of the architects of the past and of their religious and symbolic world. The course provides the first complete, easy introduction to this fascinating discipline.

Sep 14th 2026
5-12 Weeks
Astro 101: Black Holes (Coursera) Coursera
University of Alberta

Astro 101: Black Holes (Coursera)

What is a black hole? Do they really exist? How do they form? How are they related to stars? What would happen if you fell into one? How do you see a black hole if they emit no light? What’s the difference between a black hole and a really dark star? Could a particle accelerator create a black hole? Can a black hole also be a worm hole or a time machine? In Astro 101: Black Holes, you will explore the concepts behind black holes. Using the theme of black holes, you will learn the basic ideas of astronomy, relativity, and quantum physics.

Sep 14th 2026
5-12 Weeks