activity
20162022
most citedSensitivity of airborne transmission of enveloped viruses to seasonal variation in indoor relative humidity

11 citations · 21 across the 4 of their papers we have counts for

collaborators

5 papers

physics.ao-ph2022★ 1 cited

Enhancements in cloud condensation nuclei concentrations from turbulent fluctuations in supersaturation

Jesse C. Anderson, Payton Beeler, Mikhail Ovchinnikov +5

The effect of aerosol emissions on the properties and distribution of clouds is a large source of uncertainty in predictions of weather and climate. These aerosol-cloud interaction…

physics.med-ph2021★ 11 cited

Sensitivity of airborne transmission of enveloped viruses to seasonal variation in indoor relative humidity

Alison Robey, Laura Fierce

In temperate climates, infection rates of enveloped viruses peak during the winter. While these seasonal trends are established in influenza and human coronaviruses, the mechanisms…

physics.med-ph2021★ 4 cited

Simulating near-field enhancement in transmission of airborne viruses with a quadrature-based model

Laura Fierce, Alison Robey, Cathrine Hamilton

Airborne viruses, such as influenza, tuberculosis, and SARS-CoV-2, are transmitted through virus-laden particles expelled when an infectious person sneezes, coughs, talks, or breat…

physics.med-ph2021★ 5 cited

High efficacy of layered controls for reducing transmission of airborne pathogens

Laura Fierce, Alison Robey, Cathrine Hamilton

To optimize strategies for curbing the transmission of airborne pathogens, the efficacy of three key controls -- face masks, ventilation, and physical distancing -- must be well un…

physics.ao-ph2016

Multivariate quadrature for representing cloud condensation nuclei activity of aerosol populations

Laura Fierce, Robert L. McGraw

Sparse representations of atmospheric aerosols are needed for efficient regional- and global-scale chemical transport models. Here we introduce a new framework for representing aer…