The dominant reservoirs of elemental nitrogen in protoplanetary disks have not yet been observationally identified. Likely candidates are HCN, NH_3, and N_2. The relative abundances of these carriers determine the composition of planetesimals as a function of disk radius due to strong differences in their volatility. A significant sequestration of nitrogen in carriers less volatile than N2 is likely required to deliver even small amounts of nitrogen to the Earth and potentially habitable exoplanets. While HCN has been detected in small amounts in inner disks (<10 au), so far only relatively insensitive upper limits on inner disk NH_3 have been obtained. We present new Gemini-TEXES high-resolution spectroscopy of the 10.75 μm band of warm NH...
The lifetime of gas in circumstellar disks is a fundamental quantity that informs our understanding ...
Nitrogen is the fifth most abundant element in the Universe, yet the gas-phase chemistry of N-bearin...
International audienceIsotopic ratios are keys to understanding the origin and early evolution of th...
The dominant reservoirs of elemental nitrogen in protoplanetary disks have not yet been observationa...
The origins of the ingredients necessary for life on Earth – such as water, carbon, and nitrogen – a...
Partitioning of elemental nitrogen in star-forming regions is not well constrained. Most nitrogen is...
Context. Nitrogen chemistry in protoplanetary disks and the freeze-out on dust particles is key for ...
Nitrogen is the fifth most abundant element in the Universe, yet the gas-phase chemistry of N-bearin...
The chemical evolution of nitrogen during star and planet formation is still not fully understood. A...
The dominant form of nitrogen provided to most solar system bodies is currently unknown, though avai...
HCN is a commonly observed molecule in Solar System bodies and in interstellar environments. Its abu...
Context. Nitrogen chemistry in protoplanetary disks and the freeze-out on dust particles is key for ...
Context. Nitrogen chemistry in protoplanetary disks and the freeze-out on dust particles is key for ...
Solid-state astrochemical reaction pathways have the potential to link the formation of small nitrog...
International audienceWe investigated the chemistry of nitrogen--containing species, principally iso...
The lifetime of gas in circumstellar disks is a fundamental quantity that informs our understanding ...
Nitrogen is the fifth most abundant element in the Universe, yet the gas-phase chemistry of N-bearin...
International audienceIsotopic ratios are keys to understanding the origin and early evolution of th...
The dominant reservoirs of elemental nitrogen in protoplanetary disks have not yet been observationa...
The origins of the ingredients necessary for life on Earth – such as water, carbon, and nitrogen – a...
Partitioning of elemental nitrogen in star-forming regions is not well constrained. Most nitrogen is...
Context. Nitrogen chemistry in protoplanetary disks and the freeze-out on dust particles is key for ...
Nitrogen is the fifth most abundant element in the Universe, yet the gas-phase chemistry of N-bearin...
The chemical evolution of nitrogen during star and planet formation is still not fully understood. A...
The dominant form of nitrogen provided to most solar system bodies is currently unknown, though avai...
HCN is a commonly observed molecule in Solar System bodies and in interstellar environments. Its abu...
Context. Nitrogen chemistry in protoplanetary disks and the freeze-out on dust particles is key for ...
Context. Nitrogen chemistry in protoplanetary disks and the freeze-out on dust particles is key for ...
Solid-state astrochemical reaction pathways have the potential to link the formation of small nitrog...
International audienceWe investigated the chemistry of nitrogen--containing species, principally iso...
The lifetime of gas in circumstellar disks is a fundamental quantity that informs our understanding ...
Nitrogen is the fifth most abundant element in the Universe, yet the gas-phase chemistry of N-bearin...
International audienceIsotopic ratios are keys to understanding the origin and early evolution of th...