Weak lensing in the blue: a counter-intuitive strategy for stratospheric observations
arXiv:2210.09182 · doi:10.3847/1538-3881/ac9b1c
Abstract
The statistical power of weak lensing measurements is principally driven by the number of high redshift galaxies whose shapes are resolved. Conventional wisdom and physical intuition suggest this is optimised by deep imaging at long (red or near IR) wavelengths, to avoid losing redshifted Balmer break and Lyman break galaxies. We use the synthetic Emission Line EL-COSMOS catalogue to simulate lensing observations using different filters, from various altitudes. Here were predict the number of exposures to achieve a target z > 0.3 source density, using off-the-shelf and custom filters. Ground-based observations are easily better at red wavelengths, as (more narrowly) are space-based observations. However, we find that SuperBIT, a diffraction-limited observatory operating in the stratosphere, should instead perform its lensing-quality observations at blue wavelengths.
References in corpus (5)
- The non-gravitational interactions of dark matter in colliding galaxy clusters
- Weak Gravitational Lensing with COSMOS: Galaxy Selection and Shape Measurements
- Lensing is Low: Cosmology, Galaxy Formation, or New Physics?
- Physical properties of more than one thousand brightest cluster galaxies detected in the Canada France Hawaii Telescope Legacy Survey
- A low-cost ultraviolet-to-infrared absolute quantum efficiency characterization system of detectors