We present a grid of near-infrared (IR) synthetic images of pre-main-sequence stars at different stages of evolution, which we simulate by varying envelope mass, disk radius and mass, and outflow cavity shape. Our aim is to determine how variations in physical properties of young stellar objects (e.g., mass infall rate, disk size) affect their observed colors and morphology, and use this information to highlight observable differences between different evolutionary states. We show that the near-IR colors are a function of envelope mass infall rate and inclination; hence both parameters must be constrained if colors are to be used to infer a source's true evolutionary state. Sources with more opaque envelopes have redder diffuse colors, beca...
We present a grid of radiation transfer models of axisymmetric young stellar objects (YSOs), coverin...
We present an evolutionary picture of a forming star. We assume a singular, isothermal sphere as the...
The time-scale over which and the modality by which young stellar objects (YSOs) disperse their circ...
We present a grid of near-infrared (IR) synthetic images of pre-main-sequence stars at different sta...
We present a grid of near-infrared (IR) synthetic images of pre-main-sequence stars at different sta...
We compare the infrared colors predicted by theoretical models of protostellar envelopes and protopl...
The time-scale over which and modality by which young stellar objects (YSOs) disperse their circumst...
Context. Mass-loss from evolved stars chemically enriches the interstellar medium (ISM). Stellar win...
We investigate the observational signatures of a straightforward evolutionary scenario for protoplan...
Context. Dozens of protoplanetary disks have been imaged in scattered light during the last decade. ...
Context. Determining the evolutionary stage of a Young Stellar Object (YSO) is of fundamental import...
The goal of this project is to understand the observed infrared emission of young stellar objects, a...
Context. Current atmospheric and evolutionary models for low-mass stars and brown dwarfs rely on ap...
We present a grid of radiation transfer models of axisymmetric young stellar objects (YSOs), coverin...
We present an evolutionary picture of a forming star. We assume a singular, isothermal sphere as the...
The time-scale over which and the modality by which young stellar objects (YSOs) disperse their circ...
We present a grid of near-infrared (IR) synthetic images of pre-main-sequence stars at different sta...
We present a grid of near-infrared (IR) synthetic images of pre-main-sequence stars at different sta...
We compare the infrared colors predicted by theoretical models of protostellar envelopes and protopl...
The time-scale over which and modality by which young stellar objects (YSOs) disperse their circumst...
Context. Mass-loss from evolved stars chemically enriches the interstellar medium (ISM). Stellar win...
We investigate the observational signatures of a straightforward evolutionary scenario for protoplan...
Context. Dozens of protoplanetary disks have been imaged in scattered light during the last decade. ...
Context. Determining the evolutionary stage of a Young Stellar Object (YSO) is of fundamental import...
The goal of this project is to understand the observed infrared emission of young stellar objects, a...
Context. Current atmospheric and evolutionary models for low-mass stars and brown dwarfs rely on ap...
We present a grid of radiation transfer models of axisymmetric young stellar objects (YSOs), coverin...
We present an evolutionary picture of a forming star. We assume a singular, isothermal sphere as the...
The time-scale over which and the modality by which young stellar objects (YSOs) disperse their circ...