Experimental demonstration of corrugated nanolaminate films as reflective light sails

M Matthew F. Campbell P Pawan Kumar J Jason Lynch R Ramon Gao A Adam Alfieri J John Brewer T Thomas J. Celenza M Mohsen Azadi M Michael D. Kelzenberg E Eric Stach A Aaswath P. Raman H Harry A. Atwater I Igor Bargatin D Deep Jariwala (Department of Electrical and Systems Engineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States)

Abstract

Abstract Achieving laser-driven relativistic light sails would represent a tremendous breakthrough for humankind. Numerous sail designs have been proposed, but none satisfy all the stringent optical, mechanical, and mass constraints. Here we demonstrate a class of nanolaminate sails with strong and flexible hexagonally-corrugated microstructures. Our prototypes, fabricated from alumina and molybdenum disulfide using scalable semiconductor processing techniques, feature areal densities of  < 1 g ⋅ m −2 , achieve experimentally-measured broadband reflectivities of  > 50%, and feature broadband absorptivities of  < 4% with a measurement uncertainty that overlaps with zero - indicative of our sail class’s potential for fast acceleration and ultra-low photon absorption. Moreover, we propose a sail’s maximum achievable relative velocity as a performance benchmark, and analyze optical, mechanical, and mass constraints for our design and others in the literature to highlight the strong potential of our class of sails. Our approach represents a promising step toward plausible relativistic interstellar propulsion.

Article Details

Volume / Issue Vol. 17, Issue 1
Published May 26, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (14)

M

Matthew F. Campbell

P

Pawan Kumar

J

Jason Lynch

R

Ramon Gao

A

Adam Alfieri

J

John Brewer

T

Thomas J. Celenza

M

Mohsen Azadi

M

Michael D. Kelzenberg

E

Eric Stach

A

Aaswath P. Raman

H

Harry A. Atwater

I

Igor Bargatin

D

Deep Jariwala

Department of Electrical and Systems Engineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States