- Addendum
- 10.2514/6.2021-4004.c1
Withdrawal: Additive Manufacturing Characterization in Suborbital Spaceflight and Re-entry
- Jan 11, 2021
- ASCEND 2021
- Stacie R Barbarick + 1 more +1
Publications from 2021 to 2026
Showing 9 of 9 papers
Withdrawal: Additive Manufacturing Characterization in Suborbital Spaceflight and Re-entry
Withdrawal: Low-Cost Additive Manufacturing Characterization in Suborbital Spaceflight and Re-entry
The Effects of Hyperbolic Meteoroids from Parker Solar Probe to the Moon
<p>The zodiacal cloud in the inner solar system undergoes continual evolution, as its dust grains are collisionally ground and sublimated into smaller and smaller sizes. Sufficiently small (~<500 nm) grains known as beta-meteoroids are ejected from the inner solar system on hyperbolic orbits under the influence of solar radiation pressure. These small grains can reach significantly larger speeds than those in the nominal zodiacal cloud and impact the surfaces of airless bodies. Since the discovery of the Moon's asymmetric ejecta cloud, the origin of its sunward-canted density enhancement has not been well understood. We propose impact ejecta from beta-meteoroids that hit the Moon's sunward side could explain this unresolved asymmetry. The proposed hypothesis rests on the fact that beta-meteoroids are one of the few truly asymmetric meteoroid sources in the solar system, as unbound grains always travel away from the Sun and lack a symmetric inbound counterpart. This finding suggests beta-meteoroids may also contribute to the evolution of other airless surfaces in the inner solar system as well as within other exo-zodiacal disks. We will also highlight recent observations from the Parker Solar Probe (PSP) spacecraft, which suggest it is being bombarded by the very same beta-meteoroids. We discuss how observations by PSP, which lacks a dedicated dust detector, can be used to inform the structure and variability of beta-meteoroids in the inner solar system closer to the Sun than ever before.</p>
Read moreThe Near-Sun Dust Environment: Initial Observations from Parker Solar Probe
Abstract The Parker Solar Probe (PSP) spacecraft has flown into the densest, previously unexplored, innermost region of our solar system’s zodiacal cloud. While PSP does not have a dedicated dust detector, multiple instruments on the spacecraft are sensitive to the effects of meteoroid bombardment. Here, we discuss measurements taken during PSP’s second orbit and compare them to models of the zodiacal cloud’s dust distribution. Comparing the radial impact rate trends and the timing and location of a dust impact to an energetic particle detector, we find the impactor population to be consistent with dust grains on hyperbolic orbits escaping the solar system. Assuming PSP’s impact environment is dominated by hyperbolic impactors, the total quantity of dust ejected from our solar system is estimated to be 0.5−10 tons/s. We expect PSP will encounter an increasingly intense impactor environment as its perihelion distance and semimajor axis are decreased.
Read moreWhat is causing this pregnant woman's pruritus?
Dayna Jaynstein is the assistant director of the PA program at Red Rocks Community College in Arvada, Colo., and practices emergency medicine in Denver, Colo. The author has disclosed no potential conflicts of interest, financial or otherwise. Allison Rusgo, MPH, PA-C, department editor
Read moreHadar : The Legacy of Human Ancestors (4,000,000–100,000 BCE)
A woman with a dry cough.
Dry cough and fatigue are among the most common complaints seen by providers in primary care and acute care settings. Because they are common and often self-limited, these symptoms are frequently underevaluated. Clinicians should obtain a complete history and perform a physical examination, being alert for accompanying signs and symptoms that may suggest a more serious underlying condition.
Read moreTHE JOURNAL AS A GUIDE FOR THE HEALING JOURNEY
Beelzebub as John the Baptist in Milton's Hell