In recent decades, cosmic inflation theory has largely settled the once-daunting existential question of ‘How did the Universe begin?’ for most physicists. That is to say that, from a singular hot, dense and small starting point, the just-right conditions for the emergence of the Universe were met. This set the stage for the unfathomably rapid expansion of the Big Bang and the emergent laws of physics that we observe today.
However, as the Albanian American cosmologist Laura Mersini-Houghton explains to the American host Robert Lawrence Kuhn in this instalment of his series Closer to Truth, the first fraction of a second of the Universe, just before the Big Bang, is still a wide-open scientific frontier. Exploring the fertile ground where observation meets theory, Mersini-Houghton explains why she believes the improbable existence of our Universe suggests a quantum multiverse in which some potential universes fizzle into oblivion, and others form classical universes like our own.
Video by Closer to Truth
video
Computing and artificial intelligence
Why large language models are mysterious – even to their creators
8 minutes
video
Evolution
The many ways a lizard tongue sticks, grasps, pinches and plops – in slo-mo
6 minutes
video
Biology
Starlings swoosh like brushstrokes across the sky in this dazzling short
3 minutes
video
Engineering
From simple motors to levitating trains – how design shapes innovation
23 minutes
video
Ecology and environmental sciences
The tree frog die-off that sparked a global mystery – and revealed a dark truth
15 minutes
video
Film and visual culture
Our world has very different contours when a millimetre is blown up to a full screen
8 minutes
video
Astronomy
The remarkable innovations inspired by our need to know the night sky
5 minutes
video
Knowledge
Why it takes more than a lifetime to truly understand a single meadow
11 minutes
video
Physics
Groundbreaking visualisations show how the world of the nucleus gives rise to our own
10 minutes