(That’s a lot of sad trombones.) https://twitter.com/scibry/status/1161005818378117121?s=21 …https://twitter.com/SciBry/status/1161005818378117121 …
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(That’s a lot of sad trombones.) https://twitter.com/scibry/status/1161005818378117121?s=21 …https://twitter.com/SciBry/status/1161005818378117121 …
I’m really thrilled that @DunlapInstitute and @UofT are playing such a pivotal role in this. This has been a spectacular experience for our students and postdocs.
Impressive! How many non-repeating has CHIME found? Can you summarise in a tweet the observed differences? Exciting to see novel tech really open this field up - 23 years after Duncan L's discovery #LongTermResearch #Committment #Persistence
Non-repeating FRB: we’re allowed to say that CHIME has found “hundreds”. Differences: the repeaters have wider pulse widths and more complex time-frequency structure (“sad trombones”) than the non-repeaters.
CHIME really is doing a nice job of this.
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