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Related papers: Science with an ngVLA: Exploring Protostellar Disk…

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The ngVLA will enable significant advances in our understanding of the formation and evolution of multiple star systems in the protostellar phase, building upon the breakthroughs enabled by the VLA. The high-sensitivity and resolution at…

Astrophysics of Galaxies · Physics 2018-10-17 John Tobin , Patrick Sheehan , Doug Johnstone

ALMA has revolutionized our view of protoplanetary disks, revealing structures such as gaps, rings and asymmetries that indicate dust trapping as an important mechanism in the planet formation process. However, the high resolution images…

Earth and Planetary Astrophysics · Physics 2018-10-19 Nienke van der Marel , Brenda Matthews , Ruobing Dong , Tilman Birnstiel , Andrea Isella

The Next Generation Very Large Array (ngVLA) has excellent capabilities to unveil various dynamical and chemical processes in massive star formation at the unexplored innermost regions. Based on the recent observations of ALMA/VLA as well…

Astrophysics of Galaxies · Physics 2021-03-17 Kei E. I. Tanaka , Yichen Zhang , Kazuhito Motogi

Debris disks, comprised of planetsimal belts and the dust and gas produced by their mutual collisions, are the longest-lived phase of circumstellar disks. Typically much fainter in emission than protoplanetary disks, debris disks can be…

Astrophysics of Galaxies · Physics 2018-10-17 Brenda Matthews , Jane Greaves , Grant Kennedy , Luca Matra , David Wilner , Mark Wyatt

We present simulations of the capabilities of the Next Generation Very Large Array to image at high angular resolution substructures in the dust emission of protoplanetary disks. The main goal of this study is to investigate the kinds of…

Earth and Planetary Astrophysics · Physics 2019-02-07 L. Ricci , M. Flock , D. Blanco , W. Lyra

Episodic accretion may be a common occurrence in the evolution of young pre-main sequence stars and has important implications for our understanding of star and planet formation. Many fundamental aspects of what drives the accretion…

Deep continuum surveys at radio wavelengths are able to cover large areas, yield high angular resolution, and do not suffer from dust extinction, thus providing a robust way to measure the star formation history of the universe. However,…

Astrophysics of Galaxies · Physics 2018-10-17 Amy J. Barger , Kotaro Kohno , Eric J. Murphy , Mark T. Sargent , James J. Condon

The discovery of substructures in protoplanetary disks with ALMA has provided us key insights on the formation of planets. However, observational constraints on the formation of rocky planets have been still sparse, especially because of…

Earth and Planetary Astrophysics · Physics 2022-04-06 Takahiro Ueda , Luca Ricci , Mario Flock , Zachary Castro

Planets assemble in the midplanes of protoplanetary disks. The compositions of dust and gas in the disk midplane region determine the compositions of nascent planets, including their chemical hospitality to life. In this context, the…

Astrophysics of Galaxies · Physics 2018-10-17 Karin I. Oberg , L. Ilsedore Cleeves , Ryan Loomis

Massive star formation involves significant ionization in the innermost regions near the central object, such as gravitationally trapped H II regions, jets, ionized disks, or winds. Resolved observations of the associated continuum and…

Investigating the dynamical evolution of dust grains in proto-planetary disks is a key issue to understand how planets should form. We identify under which conditions dust settling can be constrained by high angular resolution observations…

Earth and Planetary Astrophysics · Physics 2013-03-26 Y. Boehler , A. Dutrey , S. Guilloteau , V. Piétu

Utilising JWST, ALMA and the VLA we present high angular resolution (0.06''- 0.42''), multi-wavelength (4 micron - 3cm) observations of the VLA 1623-2417 protostellar system to characterise the origin, morphology and, properties of the…

The water snowline in protoplanetary disks is one of the most pivotal locations for planet formation: it sets a critical boundary of chemical composition in the disk and likely serves as a favorable site of planetesimal growth and planet…

Earth and Planetary Astrophysics · Physics 2018-10-17 Ke Zhang , Edwin A. Bergin , Jonathan P. Williams , Sean M. Andrews

Continuum observations of molecular clouds have revealed a surprising amount of substructure in the form of filaments of a few pc length and cores of ~0.1 pc diameter. Understanding the evolution of these substructures towards star…

Solar and Stellar Astrophysics · Physics 2018-10-17 James Di Francesco , Jared Keown , Rachel Friesen , Tyler Bourke , Paola Caselli

Our understanding of stellar atmospheres and our ability to infer architectures of extrasolar planetary systems rely on understanding the emission of stars at submillimeter to centimeter wavelengths. In this chapter we describe how…

The Next-Generation Very Large Array (ngVLA) will be critical for understanding how galaxies are built and evolve at the earliest epochs. The sensitivity and frequency coverage will allow for the detection of cold gas and dust in `normal'…

In dense starless and protostellar cores, the relative abundance of deuterated species to their non-deuterated counterparts can become orders of magnitude greater than in the local interstellar medium. This enhancement proceeds through…

Instrumentation and Methods for Astrophysics · Physics 2018-10-17 Rachel K. Friesen , Maria T. Beltrán , Paola Caselli , Robin T. Garrod

Current imaging observations of protoplanetary disks using ALMA primarily focus on the sub-millimeter wavelength, leaving a gap in effective observational approaches for centimeter-sized dust, which is crucial to the issue of planet…

Earth and Planetary Astrophysics · Physics 2024-03-18 Yinhao Wu , Shang-Fei Liu , Haochang Jiang , Sergei Nayakshin

Radio continuum observations have proven to be a workhorse in our understanding of the star formation process (i.e., stellar birth and death) from galaxies both in the nearby universe and out to the highest redshifts. In this article we…

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