3 ms·
Ever since I heard about the first Pulsar clock in Dansk [1] I've been wondering what it would take to DIY one. Unfortunately, documentation on the Dansk clock
by remcob 8y ago
Ever since I heard about the first Pulsar clock in Dansk [1] I've been wondering what it would take to DIY one. Unfortunately, documentation on the Dansk clock is nonexistent, giving me little to start on.
I hope ESA documents and open sources the work. If the required antenna/receiver sensitivity is not too ridiculous, this might make a cool project.
[1] https://en.wikipedia.org/wiki/Pulsar_clock https://en.wikipedia.org/wiki/Pulsar_clock
- jcims 8y agoIt’s possible but but not easy. https://www.rtl-sdr.com/detecting-pulsars-rotating-neutron-stars-with-an-rtl-sdr/ https://www.rtl-sdr.com/detecting-pulsars-rotating-neutron-s... I think some of the newer SDRs with 12-16 bits per sample and 20+ MHz bandwidth might be substantiated more suited to the task.
- remcob 8y agoThe graph in the article was made using a 30m dish, which I would not consider DIY territory. The referenced article is a study on what size dish is required with a RTL-SRD. Their conclusion is a minimum of 6m dish is required with simple post processing. They conclude that with improved hardware and better post processing 3.5m dish should be usable. I'm thinking phased array. It's a more scalable method to getting large apertures and it can constructed to target multiple pulsars at once.
- jcims 8y agoAgree on phased array as a good option to get necessary aperature. My thinking on the better hardware was that getting 10Mhz bandwidth allowed them to reduce the dish size to 3.5m. Better dynamic range and even more bandwidth might get you to <3m, which could possibly be in old C-band dish antenna range. Edit: More recent exercise - http://hawkrao.joataman.net/pulsar/results/index.html http://hawkrao.joataman.net/pulsar/results/index.html