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Laser cooling assisted thermal management of lightsails

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arxiv 2206.05383 v1 pith:6L62IVJY submitted 2022-06-11 physics.optics physics.app-ph

classification physics.opticsphysics.app-ph
keywords coolinglaserthermalexplorelightsailsmanagementacceleratedacceleration
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abstract

A lightsail can be accelerated to ultra-high speed by the radiation pressure of a laser having an intensity of the order of GW/m$^2$, which though presents a critical challenge in the thermal management of lightsails. In this letter, we explore the applicable regimes of solid-state laser cooling in dissipating heat in additional to the previously explored radiative cooling approach. We begin by examining the cooling capacity of laser cooling, and show that the cooling rate from a micron-thick layer doped with ytterbium ions can exceed that of blackbody thermal emission. This allows more intense laser illumination upon material damage, and consequently shortened acceleration distance. Next, we explore the impact of the limited operating bandwidth of laser cooling to account for the Doppler shift of the pumping laser, and conclude that laser cooling is helpful for target velocities $\lesssim5\%$ for room-temperature operations.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Torqued Accelerator using Radiation from the Sun (TARS) for Interstellar Payloads

    physics.space-ph 2025-07 conditional novelty 8.0 of 10

    TARS uses sunlight to spin up a pair of albedo-contrasting paddles, stores the energy as rotation, and then releases a pocket-size sail at about 12 km/s, enough to leave the solar system without lasers.

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