Towards a theory for Earth’s albedo stability and hemispheric symmetry in the 21st Century Journal Article uri icon

Overview

abstract

  • Abstract; ; The current scientific understanding of top-of-atmosphere globally-averaged albedo stability and hemispheric symmetry on interannual to centennial time-scales is largely phenomenological and diagnostic, leading to diverging albedo estimates over the 21; ; s; t; ; Century. We present a framework for hypothesis testing and theory development, complemented by observations, data methods, and models, to advance towards a theory for these phenomena. We present the theory’s necessary features needed and then explore two hypotheses and their observational tests: that albedo is (1) constrained by invariant Earth system properties, or (2) maintained by cloud buffering. We argue that there is a supporting role for artificial intelligence (AI) methods that express the non-linear processes that underlie these observed phenomena. Additionally, we show that the response to and relaxation from major perturbations like stratovolcanic eruptions may help to falsify hypotheses. Finally multi-model ensemble experiments and observations can support this multi-pronged approach to advance towards a working theory for albedo.;

publication date

  • July 21, 2026

Date in CU Experts

  • July 23, 2026 6:58 AM

Full Author List

  • Feldman DR; Gristey JJ; Hakuba MZ; Hellinger D; Kahn S

author count

  • 5

Other Profiles

Electronic International Standard Serial Number (EISSN)

  • 2662-4435