Now I can't wait for European Extremely Large Telescope with several times the resolution (also the space Wide-Field Infrared Survey Telescope) btw PBS Nova has an awesome episode on JWST, how hard it was to get built and how it almost didn't get built because massively over budget ($10 Billion!) https://www.pbs.org/video/ultimate-space-telescope-gunryt/ This is kind of a "part 2" follow-up after it was launched and…
JWST's first spectrum of a TRAPPIST-1 planet
31–40 of 62 posts
Re: JWST's first spectrum of a TRAPPIST-1 planet
#32Given how much we know now about how inhospitable red dwarf star systems are, why are we continuing to focus on planets in such systems instead of planets in sun like stars?
I don't get the impression there's currently a bandwidth problem here that needs optimizing. It's also not completely clear how inhospitable to life they truly are. Being the most abundant type of star in the galaxy by far, it makes sense to study them very closely to at least rule out the potential for life.
Re: JWST's first spectrum of a TRAPPIST-1 planet
#33So they are confident it is just a dumb rock, and it's time to move onto another planet. Good but very boring news.
Re: JWST's first spectrum of a TRAPPIST-1 planet
#34Given how much we know now about how inhospitable red dwarf star systems are, why are we continuing to focus on planets in such systems instead of planets in sun like stars?
Re: JWST's first spectrum of a TRAPPIST-1 planet
#35Given how much we know now about how inhospitable red dwarf star systems are, why are we continuing to focus on planets in such systems instead of planets in sun like stars?
Re: JWST's first spectrum of a TRAPPIST-1 planet
#36Re: JWST's first spectrum of a TRAPPIST-1 planet
#37Earlier quoted context omitted.
I don't get the impression there's currently a bandwidth problem here that needs optimizing. It's also not completely clear how inhospitable to life they truly are. Being the most abundant type of star in the galaxy by far, it makes sense to study them very closely to at least rule out the potential for life.
The habitable zone is very close to the star; this results in a high probability of the planet being tidally locked and a high probability of being affected by solar flares.
I remember an interesting astrobotany paper hypothesizing that if plants were to evolve on a red dwarf planet, there would be selective pressure for them to be black rather than green (for maximum light absorption, as most light would be infrared).
Re: JWST's first spectrum of a TRAPPIST-1 planet
#38Earlier quoted context omitted.
The habitable zone is very close to the star; this results in a high probability of the planet being tidally locked and a high probability of being affected by solar flares.
A tidally locked planet would be neat if civilization could exist there. One side would be constantly hot, and the other would be frozen, but there would exist a temperate climate zone in a longitudinal ring connecting the poles. Almost like a ring planet from Halo. I remember an interesting astrobotany paper hypothesizing that if plants were to evolve on a red dwarf planet, there would be selective pressure for them…
Re: JWST's first spectrum of a TRAPPIST-1 planet
#39Given how much we know now about how inhospitable red dwarf star systems are, why are we continuing to focus on planets in such systems instead of planets in sun like stars?
Of the 131 stars and sub-stellar objects within 20 light years of the Earth, 101 are red or brown dwarfs. JWST/NIRISS has limited resolution, it's not going to be shooting spectra of exoplanet atmospheres of systems 50,000 light years away. They're just measuring every exoplanet system.
Re: JWST's first spectrum of a TRAPPIST-1 planet
#40Earlier quoted context omitted.
I don't get the impression there's currently a bandwidth problem here that needs optimizing. It's also not completely clear how inhospitable to life they truly are. Being the most abundant type of star in the galaxy by far, it makes sense to study them very closely to at least rule out the potential for life.
The habitable zone is very close to the star; this results in a high probability of the planet being tidally locked and a high probability of being affected by solar flares.