PDRs4All II: JWST's NIR and MIR imaging view of the Orion Nebula

The JWST has captured the most detailed and sharpest infrared images ever taken of the inner region of the Orion Nebula, the nearest massive star formation region, and a prototypical highly irradiated dense photo-dissociation region (PDR). We investigate the fundamental interaction of far-ultraviole...

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Veröffentlicht in:Astronomy and astrophysics (Berlin) 2023-09
Hauptverfasser: Berné, Olivier, Canin, Amélie, Chown, Ryan, Dries Van De Putte, Schroetter, Ilane, Dartois, Emmanuel, Vicente, Sílvia, Abergel, Alain, Bergin, Edwin A, Bernard-Salas, Jeronimo, Boersma, Christiaan, Bron, Emeric, Cami, Jan, Cuadrado, Sara, Dicken, Daniel, Elyajouri, Meriem, Fuente, Asunción, Goicoechea, Javier R, Gordon, Karl D, Issa, Lina, Kannavou, Olga, Khan, Baria, Lacinbala, Ozan, Languignon, David, Romane Le Gal, Okada, Yoko, Onaka, Takashi, Pasquini, Sofia, Pound, Marc W, Röllig, Markus, Schirmer, Thiébaut, Tabone, Benoit, Alexander G G M Tielens, Wolfire, Mark G, Zannese, Marion, Ysard, Nathalie, Marc-Antoine Miville-Deschenes, Allamandola, Louis, Auchettl, Rebecca, Bejaoui, Salma, Bera, Partha P, Black, John H, Boulanger, Francois, Bouwman, Jordy, Brandl, Bernhard, Brechignac, Philippe, Brünken, Sandra, Burkhardt, rew, Candian, Alessandra, Cernicharo, Jose, Chabot, Marin, Chakraborty, Shubhadip, Colgan, Sean W J, Cooke, Ilsa R, Coutens, Audrey, Demyk, Karine, Foschino, Sacha, García-Lario, Pedro, Gottlieb, Carl A, Guillard, Pierre, Gusdorf, Antoine, Herbst, Eric, Hornekaer, Liv, Janot-Pacheco, Eduardo, Kaufman, Michael, Kirsanova, Maria S, Klaassen, Pamela, Labiano, Álvaro, Lai, Thomas S -Y, Lee, Timothy J, Li, Aigen, Mackie, Cameron J, Merino, Pablo, Micelotta, Elisabetta R, Morse, Jon A, Mulas, Giacomo, Neelamkodan, Naslim, Ohsawa, Ryou, Omont, Alain, Paladini, Roberta, Palumbo, Maria Elisabetta, Pathak, Amit, Pendleton, Yvonne J, Petrignani, Annemieke, Pino, Thomas, Rangwala, Naseem, Rapacioli, Mathias, Roman-Duval, Julia, Roueff, Evelyne, Rouillé, Gaël, Sales, Dinalva A, Sandstrom, Karin, Shenoy, Sachindev S, Teyssier, David, Thomas, Richard D, Togi, Aditya, Verstraete, Laurent, Witt, Adolf N, Zhang, Ziwei E, Zhen, Junfeng
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container_title Astronomy and astrophysics (Berlin)
container_volume
creator Berné, Olivier
Canin, Amélie
Chown, Ryan
Dries Van De Putte
Schroetter, Ilane
Dartois, Emmanuel
Vicente, Sílvia
Abergel, Alain
Bergin, Edwin A
Bernard-Salas, Jeronimo
Boersma, Christiaan
Bron, Emeric
Cami, Jan
Cuadrado, Sara
Dicken, Daniel
Elyajouri, Meriem
Fuente, Asunción
Goicoechea, Javier R
Gordon, Karl D
Issa, Lina
Kannavou, Olga
Khan, Baria
Lacinbala, Ozan
Languignon, David
Romane Le Gal
Okada, Yoko
Onaka, Takashi
Pasquini, Sofia
Pound, Marc W
Röllig, Markus
Schirmer, Thiébaut
Tabone, Benoit
Alexander G G M Tielens
Wolfire, Mark G
Zannese, Marion
Ysard, Nathalie
Marc-Antoine Miville-Deschenes
Allamandola, Louis
Auchettl, Rebecca
Bejaoui, Salma
Bera, Partha P
Black, John H
Boulanger, Francois
Bouwman, Jordy
Brandl, Bernhard
Brechignac, Philippe
Brünken, Sandra
Burkhardt, rew
Candian, Alessandra
Cernicharo, Jose
Chabot, Marin
Chakraborty, Shubhadip
Colgan, Sean W J
Cooke, Ilsa R
Coutens, Audrey
Demyk, Karine
Foschino, Sacha
García-Lario, Pedro
Gottlieb, Carl A
Guillard, Pierre
Gusdorf, Antoine
Herbst, Eric
Hornekaer, Liv
Janot-Pacheco, Eduardo
Kaufman, Michael
Kirsanova, Maria S
Klaassen, Pamela
Labiano, Álvaro
Lai, Thomas S -Y
Lee, Timothy J
Li, Aigen
Mackie, Cameron J
Merino, Pablo
Micelotta, Elisabetta R
Morse, Jon A
Mulas, Giacomo
Neelamkodan, Naslim
Ohsawa, Ryou
Omont, Alain
Paladini, Roberta
Palumbo, Maria Elisabetta
Pathak, Amit
Pendleton, Yvonne J
Petrignani, Annemieke
Pino, Thomas
Rangwala, Naseem
Rapacioli, Mathias
Roman-Duval, Julia
Roueff, Evelyne
Rouillé, Gaël
Sales, Dinalva A
Sandstrom, Karin
Shenoy, Sachindev S
Teyssier, David
Thomas, Richard D
Togi, Aditya
Verstraete, Laurent
Witt, Adolf N
Zhang, Ziwei E
Zhen, Junfeng
description The JWST has captured the most detailed and sharpest infrared images ever taken of the inner region of the Orion Nebula, the nearest massive star formation region, and a prototypical highly irradiated dense photo-dissociation region (PDR). We investigate the fundamental interaction of far-ultraviolet photons with molecular clouds. The transitions across the ionization front (IF), dissociation front (DF), and the molecular cloud are studied at high-angular resolution. These transitions are relevant to understanding the effects of radiative feedback from massive stars and the dominant physical and chemical processes that lead to the IR emission that JWST will detect in many Galactic and extragalactic environments. Due to the proximity of the Orion Nebula and the unprecedented angular resolution of JWST, these data reveal that the molecular cloud borders are hyper structured at small angular scales of 0.1-1" (0.0002-0.002 pc or 40-400 au at 414 pc). A diverse set of features are observed such as ridges, waves, globules and photoevaporated protoplanetary disks. At the PDR atomic to molecular transition, several bright features are detected that are associated with the highly irradiated surroundings of the dense molecular condensations and embedded young star. Toward the Orion Bar PDR, a highly sculpted interface is detected with sharp edges and density increases near the IF and DF. This was predicted by previous modeling studies, but the fronts were unresolved in most tracers. A complex, structured, and folded DF surface was traced by the H2 lines. This dataset was used to revisit the commonly adopted 2D PDR structure of the Orion Bar. JWST provides us with a complete view of the PDR, all the way from the PDR edge to the substructured dense region, and this allowed us to determine, in detail, where the emission of the atomic and molecular lines, aromatic bands, and dust originate.
doi_str_mv 10.48550/arxiv.2308.16732
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Canin, Amélie ; Chown, Ryan ; Dries Van De Putte ; Schroetter, Ilane ; Dartois, Emmanuel ; Vicente, Sílvia ; Abergel, Alain ; Bergin, Edwin A ; Bernard-Salas, Jeronimo ; Boersma, Christiaan ; Bron, Emeric ; Cami, Jan ; Cuadrado, Sara ; Dicken, Daniel ; Elyajouri, Meriem ; Fuente, Asunción ; Goicoechea, Javier R ; Gordon, Karl D ; Issa, Lina ; Kannavou, Olga ; Khan, Baria ; Lacinbala, Ozan ; Languignon, David ; Romane Le Gal ; Okada, Yoko ; Onaka, Takashi ; Pasquini, Sofia ; Pound, Marc W ; Röllig, Markus ; Schirmer, Thiébaut ; Tabone, Benoit ; Alexander G G M Tielens ; Wolfire, Mark G ; Zannese, Marion ; Ysard, Nathalie ; Marc-Antoine Miville-Deschenes ; Allamandola, Louis ; Auchettl, Rebecca ; Bejaoui, Salma ; Bera, Partha P ; Black, John H ; Boulanger, Francois ; Bouwman, Jordy ; Brandl, Bernhard ; Brechignac, Philippe ; Brünken, Sandra ; Burkhardt, rew ; Candian, Alessandra ; Cernicharo, Jose ; Chabot, Marin ; Chakraborty, Shubhadip ; Colgan, Sean W J ; Cooke, Ilsa R ; Coutens, Audrey ; Demyk, Karine ; Foschino, Sacha ; García-Lario, Pedro ; Gottlieb, Carl A ; Guillard, Pierre ; Gusdorf, Antoine ; Herbst, Eric ; Hornekaer, Liv ; Janot-Pacheco, Eduardo ; Kaufman, Michael ; Kirsanova, Maria S ; Klaassen, Pamela ; Labiano, Álvaro ; Lai, Thomas S -Y ; Lee, Timothy J ; Li, Aigen ; Mackie, Cameron J ; Merino, Pablo ; Micelotta, Elisabetta R ; Morse, Jon A ; Mulas, Giacomo ; Neelamkodan, Naslim ; Ohsawa, Ryou ; Omont, Alain ; Paladini, Roberta ; Palumbo, Maria Elisabetta ; Pathak, Amit ; Pendleton, Yvonne J ; Petrignani, Annemieke ; Pino, Thomas ; Rangwala, Naseem ; Rapacioli, Mathias ; Roman-Duval, Julia ; Roueff, Evelyne ; Rouillé, Gaël ; Sales, Dinalva A ; Sandstrom, Karin ; Shenoy, Sachindev S ; Teyssier, David ; Thomas, Richard D ; Togi, Aditya ; Verstraete, Laurent ; Witt, Adolf N ; Zhang, Ziwei E ; Zhen, Junfeng</creator><creatorcontrib>Berné, Olivier ; Canin, Amélie ; Chown, Ryan ; Dries Van De Putte ; Schroetter, Ilane ; Dartois, Emmanuel ; Vicente, Sílvia ; Abergel, Alain ; Bergin, Edwin A ; Bernard-Salas, Jeronimo ; Boersma, Christiaan ; Bron, Emeric ; Cami, Jan ; Cuadrado, Sara ; Dicken, Daniel ; Elyajouri, Meriem ; Fuente, Asunción ; Goicoechea, Javier R ; Gordon, Karl D ; Issa, Lina ; Kannavou, Olga ; Khan, Baria ; Lacinbala, Ozan ; Languignon, David ; Romane Le Gal ; Okada, Yoko ; Onaka, Takashi ; Pasquini, Sofia ; Pound, Marc W ; Röllig, Markus ; Schirmer, Thiébaut ; Tabone, Benoit ; Alexander G G M Tielens ; Wolfire, Mark G ; Zannese, Marion ; Ysard, Nathalie ; Marc-Antoine Miville-Deschenes ; Allamandola, Louis ; Auchettl, Rebecca ; Bejaoui, Salma ; Bera, Partha P ; Black, John H ; Boulanger, Francois ; Bouwman, Jordy ; Brandl, Bernhard ; Brechignac, Philippe ; Brünken, Sandra ; Burkhardt, rew ; Candian, Alessandra ; Cernicharo, Jose ; Chabot, Marin ; Chakraborty, Shubhadip ; Colgan, Sean W J ; Cooke, Ilsa R ; Coutens, Audrey ; Demyk, Karine ; Foschino, Sacha ; García-Lario, Pedro ; Gottlieb, Carl A ; Guillard, Pierre ; Gusdorf, Antoine ; Herbst, Eric ; Hornekaer, Liv ; Janot-Pacheco, Eduardo ; Kaufman, Michael ; Kirsanova, Maria S ; Klaassen, Pamela ; Labiano, Álvaro ; Lai, Thomas S -Y ; Lee, Timothy J ; Li, Aigen ; Mackie, Cameron J ; Merino, Pablo ; Micelotta, Elisabetta R ; Morse, Jon A ; Mulas, Giacomo ; Neelamkodan, Naslim ; Ohsawa, Ryou ; Omont, Alain ; Paladini, Roberta ; Palumbo, Maria Elisabetta ; Pathak, Amit ; Pendleton, Yvonne J ; Petrignani, Annemieke ; Pino, Thomas ; Rangwala, Naseem ; Rapacioli, Mathias ; Roman-Duval, Julia ; Roueff, Evelyne ; Rouillé, Gaël ; Sales, Dinalva A ; Sandstrom, Karin ; Shenoy, Sachindev S ; Teyssier, David ; Thomas, Richard D ; Togi, Aditya ; Verstraete, Laurent ; Witt, Adolf N ; Zhang, Ziwei E ; Zhen, Junfeng</creatorcontrib><description>The JWST has captured the most detailed and sharpest infrared images ever taken of the inner region of the Orion Nebula, the nearest massive star formation region, and a prototypical highly irradiated dense photo-dissociation region (PDR). We investigate the fundamental interaction of far-ultraviolet photons with molecular clouds. The transitions across the ionization front (IF), dissociation front (DF), and the molecular cloud are studied at high-angular resolution. These transitions are relevant to understanding the effects of radiative feedback from massive stars and the dominant physical and chemical processes that lead to the IR emission that JWST will detect in many Galactic and extragalactic environments. Due to the proximity of the Orion Nebula and the unprecedented angular resolution of JWST, these data reveal that the molecular cloud borders are hyper structured at small angular scales of 0.1-1" (0.0002-0.002 pc or 40-400 au at 414 pc). A diverse set of features are observed such as ridges, waves, globules and photoevaporated protoplanetary disks. At the PDR atomic to molecular transition, several bright features are detected that are associated with the highly irradiated surroundings of the dense molecular condensations and embedded young star. Toward the Orion Bar PDR, a highly sculpted interface is detected with sharp edges and density increases near the IF and DF. This was predicted by previous modeling studies, but the fronts were unresolved in most tracers. A complex, structured, and folded DF surface was traced by the H2 lines. This dataset was used to revisit the commonly adopted 2D PDR structure of the Orion Bar. JWST provides us with a complete view of the PDR, all the way from the PDR edge to the substructured dense region, and this allowed us to determine, in detail, where the emission of the atomic and molecular lines, aromatic bands, and dust originate.</description><identifier>ISSN: 0004-6361</identifier><identifier>EISSN: 2331-8422</identifier><identifier>EISSN: 1432-0756</identifier><identifier>DOI: 10.48550/arxiv.2308.16732</identifier><language>eng</language><publisher>Ithaca: Cornell University Library, arXiv.org</publisher><subject>Angular resolution ; Astrochemistry ; Chemical reactions ; Emission ; Globules ; Infrared imagery ; Massive stars ; Molecular clouds ; Orion nebula ; Physics ; Physics - Astrophysics of Galaxies ; Planet formation ; Protoplanetary disks ; Star &amp; galaxy formation ; Star formation</subject><ispartof>Astronomy and astrophysics (Berlin), 2023-09</ispartof><rights>2023. 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R</creatorcontrib><creatorcontrib>Gordon, Karl D</creatorcontrib><creatorcontrib>Issa, Lina</creatorcontrib><creatorcontrib>Kannavou, Olga</creatorcontrib><creatorcontrib>Khan, Baria</creatorcontrib><creatorcontrib>Lacinbala, Ozan</creatorcontrib><creatorcontrib>Languignon, David</creatorcontrib><creatorcontrib>Romane Le Gal</creatorcontrib><creatorcontrib>Okada, Yoko</creatorcontrib><creatorcontrib>Onaka, Takashi</creatorcontrib><creatorcontrib>Pasquini, Sofia</creatorcontrib><creatorcontrib>Pound, Marc W</creatorcontrib><creatorcontrib>Röllig, Markus</creatorcontrib><creatorcontrib>Schirmer, Thiébaut</creatorcontrib><creatorcontrib>Tabone, Benoit</creatorcontrib><creatorcontrib>Alexander G G M Tielens</creatorcontrib><creatorcontrib>Wolfire, Mark G</creatorcontrib><creatorcontrib>Zannese, Marion</creatorcontrib><creatorcontrib>Ysard, Nathalie</creatorcontrib><creatorcontrib>Marc-Antoine Miville-Deschenes</creatorcontrib><creatorcontrib>Allamandola, Louis</creatorcontrib><creatorcontrib>Auchettl, Rebecca</creatorcontrib><creatorcontrib>Bejaoui, Salma</creatorcontrib><creatorcontrib>Bera, Partha P</creatorcontrib><creatorcontrib>Black, John H</creatorcontrib><creatorcontrib>Boulanger, Francois</creatorcontrib><creatorcontrib>Bouwman, Jordy</creatorcontrib><creatorcontrib>Brandl, Bernhard</creatorcontrib><creatorcontrib>Brechignac, Philippe</creatorcontrib><creatorcontrib>Brünken, Sandra</creatorcontrib><creatorcontrib>Burkhardt, rew</creatorcontrib><creatorcontrib>Candian, Alessandra</creatorcontrib><creatorcontrib>Cernicharo, Jose</creatorcontrib><creatorcontrib>Chabot, Marin</creatorcontrib><creatorcontrib>Chakraborty, Shubhadip</creatorcontrib><creatorcontrib>Colgan, Sean W J</creatorcontrib><creatorcontrib>Cooke, Ilsa R</creatorcontrib><creatorcontrib>Coutens, Audrey</creatorcontrib><creatorcontrib>Demyk, Karine</creatorcontrib><creatorcontrib>Foschino, Sacha</creatorcontrib><creatorcontrib>García-Lario, Pedro</creatorcontrib><creatorcontrib>Gottlieb, Carl A</creatorcontrib><creatorcontrib>Guillard, Pierre</creatorcontrib><creatorcontrib>Gusdorf, Antoine</creatorcontrib><creatorcontrib>Herbst, Eric</creatorcontrib><creatorcontrib>Hornekaer, Liv</creatorcontrib><creatorcontrib>Janot-Pacheco, Eduardo</creatorcontrib><creatorcontrib>Kaufman, Michael</creatorcontrib><creatorcontrib>Kirsanova, Maria S</creatorcontrib><creatorcontrib>Klaassen, Pamela</creatorcontrib><creatorcontrib>Labiano, Álvaro</creatorcontrib><creatorcontrib>Lai, Thomas S -Y</creatorcontrib><creatorcontrib>Lee, Timothy J</creatorcontrib><creatorcontrib>Li, Aigen</creatorcontrib><creatorcontrib>Mackie, Cameron J</creatorcontrib><creatorcontrib>Merino, Pablo</creatorcontrib><creatorcontrib>Micelotta, Elisabetta R</creatorcontrib><creatorcontrib>Morse, Jon A</creatorcontrib><creatorcontrib>Mulas, Giacomo</creatorcontrib><creatorcontrib>Neelamkodan, Naslim</creatorcontrib><creatorcontrib>Ohsawa, Ryou</creatorcontrib><creatorcontrib>Omont, Alain</creatorcontrib><creatorcontrib>Paladini, Roberta</creatorcontrib><creatorcontrib>Palumbo, Maria Elisabetta</creatorcontrib><creatorcontrib>Pathak, Amit</creatorcontrib><creatorcontrib>Pendleton, Yvonne J</creatorcontrib><creatorcontrib>Petrignani, Annemieke</creatorcontrib><creatorcontrib>Pino, Thomas</creatorcontrib><creatorcontrib>Rangwala, Naseem</creatorcontrib><creatorcontrib>Rapacioli, Mathias</creatorcontrib><creatorcontrib>Roman-Duval, Julia</creatorcontrib><creatorcontrib>Roueff, Evelyne</creatorcontrib><creatorcontrib>Rouillé, Gaël</creatorcontrib><creatorcontrib>Sales, Dinalva A</creatorcontrib><creatorcontrib>Sandstrom, Karin</creatorcontrib><creatorcontrib>Shenoy, Sachindev S</creatorcontrib><creatorcontrib>Teyssier, David</creatorcontrib><creatorcontrib>Thomas, Richard D</creatorcontrib><creatorcontrib>Togi, Aditya</creatorcontrib><creatorcontrib>Verstraete, Laurent</creatorcontrib><creatorcontrib>Witt, Adolf N</creatorcontrib><creatorcontrib>Zhang, Ziwei E</creatorcontrib><creatorcontrib>Zhen, Junfeng</creatorcontrib><title>PDRs4All II: JWST's NIR and MIR imaging view of the Orion Nebula</title><title>Astronomy and astrophysics (Berlin)</title><description>The JWST has captured the most detailed and sharpest infrared images ever taken of the inner region of the Orion Nebula, the nearest massive star formation region, and a prototypical highly irradiated dense photo-dissociation region (PDR). We investigate the fundamental interaction of far-ultraviolet photons with molecular clouds. The transitions across the ionization front (IF), dissociation front (DF), and the molecular cloud are studied at high-angular resolution. These transitions are relevant to understanding the effects of radiative feedback from massive stars and the dominant physical and chemical processes that lead to the IR emission that JWST will detect in many Galactic and extragalactic environments. Due to the proximity of the Orion Nebula and the unprecedented angular resolution of JWST, these data reveal that the molecular cloud borders are hyper structured at small angular scales of 0.1-1" (0.0002-0.002 pc or 40-400 au at 414 pc). A diverse set of features are observed such as ridges, waves, globules and photoevaporated protoplanetary disks. At the PDR atomic to molecular transition, several bright features are detected that are associated with the highly irradiated surroundings of the dense molecular condensations and embedded young star. Toward the Orion Bar PDR, a highly sculpted interface is detected with sharp edges and density increases near the IF and DF. This was predicted by previous modeling studies, but the fronts were unresolved in most tracers. A complex, structured, and folded DF surface was traced by the H2 lines. This dataset was used to revisit the commonly adopted 2D PDR structure of the Orion Bar. JWST provides us with a complete view of the PDR, all the way from the PDR edge to the substructured dense region, and this allowed us to determine, in detail, where the emission of the atomic and molecular lines, aromatic bands, and dust originate.</description><subject>Angular resolution</subject><subject>Astrochemistry</subject><subject>Chemical reactions</subject><subject>Emission</subject><subject>Globules</subject><subject>Infrared imagery</subject><subject>Massive stars</subject><subject>Molecular clouds</subject><subject>Orion nebula</subject><subject>Physics</subject><subject>Physics - Astrophysics of Galaxies</subject><subject>Planet formation</subject><subject>Protoplanetary disks</subject><subject>Star &amp; galaxy formation</subject><subject>Star 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Edwin A ; Bernard-Salas, Jeronimo ; Boersma, Christiaan ; Bron, Emeric ; Cami, Jan ; Cuadrado, Sara ; Dicken, Daniel ; Elyajouri, Meriem ; Fuente, Asunción ; Goicoechea, Javier R ; Gordon, Karl D ; Issa, Lina ; Kannavou, Olga ; Khan, Baria ; Lacinbala, Ozan ; Languignon, David ; Romane Le Gal ; Okada, Yoko ; Onaka, Takashi ; Pasquini, Sofia ; Pound, Marc W ; Röllig, Markus ; Schirmer, Thiébaut ; Tabone, Benoit ; Alexander G G M Tielens ; Wolfire, Mark G ; Zannese, Marion ; Ysard, Nathalie ; Marc-Antoine Miville-Deschenes ; Allamandola, Louis ; Auchettl, Rebecca ; Bejaoui, Salma ; Bera, Partha P ; Black, John H ; Boulanger, Francois ; Bouwman, Jordy ; Brandl, Bernhard ; Brechignac, Philippe ; Brünken, Sandra ; Burkhardt, rew ; Candian, Alessandra ; Cernicharo, Jose ; Chabot, Marin ; Chakraborty, Shubhadip ; Colgan, Sean W J ; Cooke, Ilsa R ; Coutens, Audrey ; Demyk, Karine ; Foschino, Sacha ; García-Lario, Pedro ; Gottlieb, Carl A ; Guillard, Pierre ; Gusdorf, Antoine ; Herbst, Eric ; Hornekaer, Liv ; Janot-Pacheco, Eduardo ; Kaufman, Michael ; Kirsanova, Maria S ; Klaassen, Pamela ; Labiano, Álvaro ; Lai, Thomas S -Y ; Lee, Timothy J ; Li, Aigen ; Mackie, Cameron J ; Merino, Pablo ; Micelotta, Elisabetta R ; Morse, Jon A ; Mulas, Giacomo ; Neelamkodan, Naslim ; Ohsawa, Ryou ; Omont, Alain ; Paladini, Roberta ; Palumbo, Maria Elisabetta ; Pathak, Amit ; Pendleton, Yvonne J ; Petrignani, Annemieke ; Pino, Thomas ; Rangwala, Naseem ; Rapacioli, Mathias ; Roman-Duval, Julia ; Roueff, Evelyne ; Rouillé, Gaël ; Sales, Dinalva A ; Sandstrom, Karin ; Shenoy, Sachindev S ; Teyssier, David ; Thomas, Richard D ; Togi, Aditya ; Verstraete, Laurent ; Witt, Adolf N ; Zhang, Ziwei E ; Zhen, 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Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Berné, Olivier</au><au>Canin, Amélie</au><au>Chown, Ryan</au><au>Dries Van De Putte</au><au>Schroetter, Ilane</au><au>Dartois, Emmanuel</au><au>Vicente, Sílvia</au><au>Abergel, Alain</au><au>Bergin, Edwin A</au><au>Bernard-Salas, Jeronimo</au><au>Boersma, Christiaan</au><au>Bron, Emeric</au><au>Cami, Jan</au><au>Cuadrado, Sara</au><au>Dicken, Daniel</au><au>Elyajouri, Meriem</au><au>Fuente, Asunción</au><au>Goicoechea, Javier R</au><au>Gordon, Karl D</au><au>Issa, Lina</au><au>Kannavou, Olga</au><au>Khan, Baria</au><au>Lacinbala, Ozan</au><au>Languignon, David</au><au>Romane Le Gal</au><au>Okada, Yoko</au><au>Onaka, Takashi</au><au>Pasquini, Sofia</au><au>Pound, Marc W</au><au>Röllig, Markus</au><au>Schirmer, Thiébaut</au><au>Tabone, Benoit</au><au>Alexander G G M Tielens</au><au>Wolfire, Mark G</au><au>Zannese, Marion</au><au>Ysard, Nathalie</au><au>Marc-Antoine Miville-Deschenes</au><au>Allamandola, Louis</au><au>Auchettl, Rebecca</au><au>Bejaoui, Salma</au><au>Bera, Partha P</au><au>Black, John H</au><au>Boulanger, Francois</au><au>Bouwman, Jordy</au><au>Brandl, Bernhard</au><au>Brechignac, Philippe</au><au>Brünken, Sandra</au><au>Burkhardt, rew</au><au>Candian, Alessandra</au><au>Cernicharo, Jose</au><au>Chabot, Marin</au><au>Chakraborty, Shubhadip</au><au>Colgan, Sean W J</au><au>Cooke, Ilsa R</au><au>Coutens, Audrey</au><au>Demyk, Karine</au><au>Foschino, Sacha</au><au>García-Lario, Pedro</au><au>Gottlieb, Carl A</au><au>Guillard, Pierre</au><au>Gusdorf, Antoine</au><au>Herbst, Eric</au><au>Hornekaer, Liv</au><au>Janot-Pacheco, Eduardo</au><au>Kaufman, Michael</au><au>Kirsanova, Maria S</au><au>Klaassen, Pamela</au><au>Labiano, Álvaro</au><au>Lai, Thomas S -Y</au><au>Lee, Timothy J</au><au>Li, Aigen</au><au>Mackie, Cameron J</au><au>Merino, Pablo</au><au>Micelotta, Elisabetta R</au><au>Morse, Jon A</au><au>Mulas, Giacomo</au><au>Neelamkodan, Naslim</au><au>Ohsawa, Ryou</au><au>Omont, Alain</au><au>Paladini, Roberta</au><au>Palumbo, Maria Elisabetta</au><au>Pathak, Amit</au><au>Pendleton, Yvonne J</au><au>Petrignani, Annemieke</au><au>Pino, Thomas</au><au>Rangwala, Naseem</au><au>Rapacioli, Mathias</au><au>Roman-Duval, Julia</au><au>Roueff, Evelyne</au><au>Rouillé, Gaël</au><au>Sales, Dinalva A</au><au>Sandstrom, Karin</au><au>Shenoy, Sachindev S</au><au>Teyssier, David</au><au>Thomas, Richard D</au><au>Togi, Aditya</au><au>Verstraete, Laurent</au><au>Witt, Adolf N</au><au>Zhang, Ziwei E</au><au>Zhen, Junfeng</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>PDRs4All II: JWST's NIR and MIR imaging view of the Orion Nebula</atitle><jtitle>Astronomy and astrophysics (Berlin)</jtitle><date>2023-09-02</date><risdate>2023</risdate><issn>0004-6361</issn><eissn>2331-8422</eissn><eissn>1432-0756</eissn><abstract>The JWST has captured the most detailed and sharpest infrared images ever taken of the inner region of the Orion Nebula, the nearest massive star formation region, and a prototypical highly irradiated dense photo-dissociation region (PDR). We investigate the fundamental interaction of far-ultraviolet photons with molecular clouds. The transitions across the ionization front (IF), dissociation front (DF), and the molecular cloud are studied at high-angular resolution. These transitions are relevant to understanding the effects of radiative feedback from massive stars and the dominant physical and chemical processes that lead to the IR emission that JWST will detect in many Galactic and extragalactic environments. Due to the proximity of the Orion Nebula and the unprecedented angular resolution of JWST, these data reveal that the molecular cloud borders are hyper structured at small angular scales of 0.1-1" (0.0002-0.002 pc or 40-400 au at 414 pc). A diverse set of features are observed such as ridges, waves, globules and photoevaporated protoplanetary disks. At the PDR atomic to molecular transition, several bright features are detected that are associated with the highly irradiated surroundings of the dense molecular condensations and embedded young star. Toward the Orion Bar PDR, a highly sculpted interface is detected with sharp edges and density increases near the IF and DF. This was predicted by previous modeling studies, but the fronts were unresolved in most tracers. A complex, structured, and folded DF surface was traced by the H2 lines. This dataset was used to revisit the commonly adopted 2D PDR structure of the Orion Bar. JWST provides us with a complete view of the PDR, all the way from the PDR edge to the substructured dense region, and this allowed us to determine, in detail, where the emission of the atomic and molecular lines, aromatic bands, and dust originate.</abstract><cop>Ithaca</cop><pub>Cornell University Library, arXiv.org</pub><doi>10.48550/arxiv.2308.16732</doi><orcidid>https://orcid.org/0009-0002-6069-0907</orcidid><orcidid>https://orcid.org/0000-0003-1805-3920</orcidid><orcidid>https://orcid.org/0000-0003-1561-6118</orcidid><orcidid>https://orcid.org/0000-0002-0850-7426</orcidid><orcidid>https://orcid.org/0000-0001-9136-8043</orcidid><oa>free_for_read</oa></addata></record>
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subjects Angular resolution
Astrochemistry
Chemical reactions
Emission
Globules
Infrared imagery
Massive stars
Molecular clouds
Orion nebula
Physics
Physics - Astrophysics of Galaxies
Planet formation
Protoplanetary disks
Star & galaxy formation
Star formation
title PDRs4All II: JWST's NIR and MIR imaging view of the Orion Nebula
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