Self-stabilization of light sails by damped internal degrees of freedom

Fuente: arXiv
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Main Authors: Rafat, M. Z., Dullin, Holger R., Kuhlmey, Boris T., Tuniz, Alessandro, Luo, Haoyuan, Roy, Dibyendu, Skinner, Sean, Alexander, Tristram J., Wheatland, Michael S., de Sterke, C. Martijn
Format: Preprint
Published: 2021
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author Rafat, M. Z.
Dullin, Holger R.
Kuhlmey, Boris T.
Tuniz, Alessandro
Luo, Haoyuan
Roy, Dibyendu
Skinner, Sean
Alexander, Tristram J.
Wheatland, Michael S.
de Sterke, C. Martijn
author_facet Rafat, M. Z.
Dullin, Holger R.
Kuhlmey, Boris T.
Tuniz, Alessandro
Luo, Haoyuan
Roy, Dibyendu
Skinner, Sean
Alexander, Tristram J.
Wheatland, Michael S.
de Sterke, C. Martijn
contents We consider the motion of a light sail that is accelerated by a powerful laser beam. We derive the equations of motion for two proof-of-concept sail designs with damped internal degrees of freedom. Using linear stability analysis we show that perturbations of the sail movement in all lateral degrees of freedom can be damped passively. This analysis also shows complicated behaviour akin to that associated with exceptional points in PT-symmetric systems in optics and quantum mechanics. The excess heat that is produced by the damping mechanism is likely to be substantially smaller than the expected heating due to the partial absorption of the incident laser beam by the sail.
format Preprint
id arxiv_https___arxiv_org_abs_2106_10961
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Self-stabilization of light sails by damped internal degrees of freedom
Rafat, M. Z.
Dullin, Holger R.
Kuhlmey, Boris T.
Tuniz, Alessandro
Luo, Haoyuan
Roy, Dibyendu
Skinner, Sean
Alexander, Tristram J.
Wheatland, Michael S.
de Sterke, C. Martijn
Classical Physics
Optics
We consider the motion of a light sail that is accelerated by a powerful laser beam. We derive the equations of motion for two proof-of-concept sail designs with damped internal degrees of freedom. Using linear stability analysis we show that perturbations of the sail movement in all lateral degrees of freedom can be damped passively. This analysis also shows complicated behaviour akin to that associated with exceptional points in PT-symmetric systems in optics and quantum mechanics. The excess heat that is produced by the damping mechanism is likely to be substantially smaller than the expected heating due to the partial absorption of the incident laser beam by the sail.
title Self-stabilization of light sails by damped internal degrees of freedom
topic Classical Physics
Optics
url https://arxiv.org/abs/2106.10961