This paper is about the JWST spectrum of a very young planetary-mass (5-10 M_J) object with two notable properties:
1) significant accretion luminosity
2) hydrocarbons in its disk, making it the smallest object we know with hydrocarbons in its disk!
1/8
This paper is about the JWST spectrum of a very young planetary-mass (5-10 M_J) object with two notable properties:
1) significant accretion luminosity
2) hydrocarbons in its disk, making it the smallest object we know with hydrocarbons in its disk!
1/8
This paper is about the JWST spectrum of a very young planetary-mass (5-10 M_J) object with two notable properties:
1) significant accretion luminosity
2) hydrocarbons in its disk, making it the smallest object we know with hydrocarbons in its disk!
1/8
This paper is about the JWST spectrum of a very young planetary-mass (5-10 M_J) object with two notable properties:
1) significant accretion luminosity
2) hydrocarbons in its disk, making it the smallest object we know with hydrocarbons in its disk!
1/8
This paper is about the JWST spectrum of a very young planetary-mass (5-10 M_J) object with two notable properties:
1) significant accretion luminosity
2) hydrocarbons in its disk, making it the smallest object we know with hydrocarbons in its disk!
1/8
youtube.com/shorts/ttia4...
youtube.com/shorts/ttia4...
If there's an angle we missed, feel free to reach out
www.statnews.com/2025/01/30/t...
If there's an angle we missed, feel free to reach out
www.statnews.com/2025/01/30/t...
The answer might be a giant ocean of supercritical water, 5,000 miles thick, hiding inside each ice giant.
Story by me in The New York Times
www.nytimes.com/2024/11/25/s...
The answer might be a giant ocean of supercritical water, 5,000 miles thick, hiding inside each ice giant.
Story by me in The New York Times
www.nytimes.com/2024/11/25/s...
Official: https://apod.nasa.gov/apod/ap231027.html
HD: https://apod.nasa.gov/apod/image/2310/2P_Encke_2023_08_24JuneLake_California_USA_DEBartlett.jpg
Please enjoy following threads too! 🔭
Official: https://apod.nasa.gov/apod/ap231027.html
HD: https://apod.nasa.gov/apod/image/2310/2P_Encke_2023_08_24JuneLake_California_USA_DEBartlett.jpg
Please enjoy following threads too! 🔭
Major thanks to @distantworlds.space for shepherding this across the finish line while I'm on leave!
Long story short: G395H may not be the ideal mode and random noise is a problem 😵💫
arxiv.org/abs/2310.10711
Major thanks to @distantworlds.space for shepherding this across the finish line while I'm on leave!
Long story short: G395H may not be the ideal mode and random noise is a problem 😵💫
arxiv.org/abs/2310.10711
Official: https://apod.nasa.gov/apod/ap231017.html
HD: https://apod.nasa.gov/apod/image/2310/PDS70_ALMA_1237.jpg
Please enjoy following threads too! 🔭
Official: https://apod.nasa.gov/apod/ap231017.html
HD: https://apod.nasa.gov/apod/image/2310/PDS70_ALMA_1237.jpg
Please enjoy following threads too! 🔭
Thread: (1/n) We observed four flares during transits of TRAPPIST-1 planets and characterized their near-IR spectra out to 3.5 μm for the first time. We used the flare spectra to decontaminate the transits.
arxiv.org/abs/2310.03792
Thread: (1/n) We observed four flares during transits of TRAPPIST-1 planets and characterized their near-IR spectra out to 3.5 μm for the first time. We used the flare spectra to decontaminate the transits.
arxiv.org/abs/2310.03792
We just published the first JWST spectrum of one of the TRAPPIST-1 planets, so I'm excited to share in this thread what we saw!
Our findings could have important implications for the TRAPPIST-1 planets in the habitable zone.
Read on!
🔭
We just published the first JWST spectrum of one of the TRAPPIST-1 planets, so I'm excited to share in this thread what we saw!
Our findings could have important implications for the TRAPPIST-1 planets in the habitable zone.
Read on!
🔭
Official: https://apod.nasa.gov/apod/ap230908.html
HD: https://apod.nasa.gov/apod/image/2309/OmegaNebulaGrandMesaObservatory2023.jpg
Please enjoy following threads too! 🔭
Official: https://apod.nasa.gov/apod/ap230908.html
HD: https://apod.nasa.gov/apod/image/2309/OmegaNebulaGrandMesaObservatory2023.jpg
Please enjoy following threads too! 🔭
Official: https://apod.nasa.gov/apod/ap230902.html
HD: https://apod.nasa.gov/apod/image/2309/268_lorand_fenyes_iris_ngc7023.jpg
Please enjoy following threads too! 🔭
Official: https://apod.nasa.gov/apod/ap230902.html
HD: https://apod.nasa.gov/apod/image/2309/268_lorand_fenyes_iris_ngc7023.jpg
Please enjoy following threads too! 🔭
Seeing this molecule in the hot Jupiter WASP-31b provides an opportunity to compare metal hydrides in exoplanet and brown dwarf atmospheres.
Great work led by @lauraflagg.bsky.social
🔭 🧪
news.cornell.edu/stories/2023...
Seeing this molecule in the hot Jupiter WASP-31b provides an opportunity to compare metal hydrides in exoplanet and brown dwarf atmospheres.
Great work led by @lauraflagg.bsky.social
🔭 🧪
news.cornell.edu/stories/2023...