Will Cantrell

Will Cantrell

Michigan Technological University

H-index: 24

North America-United States

About Will Cantrell

Will Cantrell, With an exceptional h-index of 24 and a recent h-index of 18 (since 2020), a distinguished researcher at Michigan Technological University, specializes in the field of ice nucleation, cloud physics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Physical science research needed to evaluate the viability and risks of marine cloud brightening

Droplet growth or evaporation does not buffer the variability in supersaturation in clean clouds

Modeling the Subgrid-Scale Scalar Variance: A Priori Tests and Application to Supersaturation in Cloud Turbulence

Glaciation of Mixed-Phase Clouds: Insights from Bulk Model and Bin-Microphysics Large-Eddy Simulation Informed by Laboratory Experiment

Molecular simulations reveal that heterogeneous ice nucleation occurs at higher temperatures in water under capillary tension

Enhancements in cloud condensation nuclei activity from turbulent fluctuations in supersaturation

Scaling of turbulence and microphysics in a convection–cloud chamber of varying height

The Settling Rates of Particles in Rayleigh–Bénard Turbulence

Will Cantrell Information

University

Position

Professor of Physics

Citations(all)

3741

Citations(since 2020)

1227

Cited By

2940

hIndex(all)

24

hIndex(since 2020)

18

i10Index(all)

45

i10Index(since 2020)

29

Email

University Profile Page

Michigan Technological University

Google Scholar

View Google Scholar Profile

Will Cantrell Skills & Research Interests

ice nucleation

cloud physics

Top articles of Will Cantrell

Title

Journal

Author(s)

Publication Date

Physical science research needed to evaluate the viability and risks of marine cloud brightening

Graham Feingold

Virendra P Ghate

Lynn M Russell

Peter Blossey

Will Cantrell

...

2024/3/20

Droplet growth or evaporation does not buffer the variability in supersaturation in clean clouds

Journal of the Atmospheric Sciences

Jesse C Anderson

Ian Helman

Raymond A Shaw

Will Cantrell

2024/1

Modeling the Subgrid-Scale Scalar Variance: A Priori Tests and Application to Supersaturation in Cloud Turbulence

Journal of the Atmospheric Sciences

Scott T Salesky

Kendra Gillis

Jesse Anderson

Ian Helman

Will Cantrell

...

2024/3/20

Glaciation of Mixed-Phase Clouds: Insights from Bulk Model and Bin-Microphysics Large-Eddy Simulation Informed by Laboratory Experiment

EGUsphere

Aaron Wang

Steve Krueger

Sisi Chen

Mikhail Ovchinnikov

Will Cantrell

...

2024/4/22

Molecular simulations reveal that heterogeneous ice nucleation occurs at higher temperatures in water under capillary tension

Atmospheric Chemistry and Physics

Elise Rosky

Will Cantrell

Tianshu Li

Issei Nakamura

Raymond A Shaw

2023/9/26

Enhancements in cloud condensation nuclei activity from turbulent fluctuations in supersaturation

Geophysical Research Letters

Jesse C Anderson

Payton Beeler

Mikhail Ovchinnikov

Will Cantrell

Steven Krueger

...

2023/9/16

Scaling of turbulence and microphysics in a convection–cloud chamber of varying height

Journal of Advances in Modeling Earth Systems

Subin Thomas

Fan Yang

Mikhail Ovchinnikov

Will Cantrell

Raymond A Shaw

2023/2

The Settling Rates of Particles in Rayleigh–Bénard Turbulence

Bulletin of the American Physical Society

Kristin Swartz-Schult

Jesse Anderson

Hamed Fahandezh Sadi

Swafuva Varappillikudy Sulaiman

Will Cantrell

...

2023/11/20

Data supporting the paper"" Droplet growth or evaporation does not buffer the variability in supersaturation in clean clouds"

Jesse Anderson

Ian Helman

Raymond Shaw

Will Cantrell

2023

Cloud microphysical response to entrainment and mixing is locally inhomogeneous and globally homogeneous: Evidence from the lab

Proceedings of the National Academy of Sciences

Jae Min Yeom

Ian Helman

Prasanth Prabhakaran

Jesse C Anderson

Fan Yang

...

2023/10/17

Molecular dynamics simulation data: mW and MLmW water model ice nucleation on a hydrophilic substrate with negative pressure

Will Cantrell

Tianshu Li

Issei Nakamura

Elise Rosky

Raymond Shaw

2023

Fast and slow microphysics regimes in a minimalist model of cloudy Rayleigh-Bénard convection

Physical Review Research

Raymond A Shaw

Subin Thomas

Prasanth Prabhakaran

Will Cantrell

Mikhail Ovchinnikov

...

2023/10/6

Ice nucleation at negative pressures using molecular dynamics: Implications for atmospheric clouds

APS March Meeting Abstracts

Elise Rosky

Raymond Shaw

Will Cantrell

Tianshu Li

2022

Sources of stochasticity in the growth of cloud droplets: Supersaturation fluctuations versus turbulent transport

Journal of the Atmospheric Sciences

Prasanth Prabhakaran

Subin Thomas

Will Cantrell

Raymond A Shaw

Fan Yang

2022/12

Direct numerical simulation of turbulence and microphysics in the Pi Chamber

Physical Review Fluids

Theodore MacMillan

Raymond A Shaw

Will H Cantrell

David H Richter

2022/2/4

Saturation-ratio Fluctuations from Scalar Transport in Moist Rayleigh-Bénard Convection: One-dimensional-turbulence simulation

Authorea Preprints

Kamal Kant Chandrakar

Will Cantrell

Steven Krueger

Raymond Shaw

Scott Wunsch

2022/11/22

Homogeneous ice nucleation rate at negative pressures: The role of the density anomaly

Chemical Physics Letters

Elise Rosky

Will Cantrell

Tianshu Li

Raymond A Shaw

2022/2/1

Enhancements in cloud condensation nuclei concentrations from turbulent fluctuations in supersaturation

arXiv preprint arXiv:2210.15766

Jesse C Anderson

Payton Beeler

Mikhail Ovchinnikov

Will Cantrell

Steven Krueger

...

2022/10/27

Dimensionless parameters for cloudy Rayleigh-Bénard convection: Supersaturation, Damköhler, and Nusselt numbers

Physical Review Fluids

Subin Thomas

Prasanth Prabhakaran

Fan Yang

Will H Cantrell

Raymond A Shaw

2022/1/27

Laboratory Measurements of Cloud Scavenging of Interstitial Aerosol in a Turbulent Environment (Final Technical Report)

Will Cantrell

Raymond Shaw

Claudio Mazzoleni

2022/8/17

See List of Professors in Will Cantrell University(Michigan Technological University)