What did the Birmingham 'mini universe' experiment do?
It trapped ~24,000 rubidium atoms in a Bose–Einstein condensate, split the cloud into a bright (observed) and dark (unobserved) sector, and tracked internal changes to define a sequence of events without any external clock.
How does this experiment define time?
Time is defined relationally as the direction of increasing entropy within the system—an 'entropic time' measured by internal changes rather than an external T parameter.
What is a Bose–Einstein condensate (BEC) and why was it used?
A BEC is a cold quantum state where atoms act as a single wavefunction; it makes quantum behavior macroscopic and controllable, letting researchers observe internal evolution directly.
Which theoretical problem does this address?
It addresses the Wheeler–DeWitt 'problem of time' in quantum gravity, where the universe's fundamental equations lack an explicit time parameter.
What are the broader implications of entropic time?
If time emerges from internal entropy, then in closed quantum systems time can be a relational property; in uniform, maximum-entropy states the flow of time could effectively stop.