A Gedanken spacecraft that operates using the quantum vacuum (Dynamic Casimir effect)
arXiv:physics/0303108 · doi:10.1023/B:FOOP.0000019624.51662.50
Abstract
Conventional rockets are not a suitable technology for deep space missions. Chemical rockets require a very large weight of propellant, travel very slowly compared to light speed, and require significant energy to maintain operation over periods of years. For example, the 722 kg Voyager spacecraft required 13,600 kg of propellant to launch and would take about 80,000 years to reach the nearest star, Proxima Centauri, about 4.3 light years away. There have been various attempts at developing ideas on which one might base a spacecraft that would permit deep space travel, such as spacewarps. In this paper we consider another suggestion from science fiction and explore how the quantum vacuum might be utilized in the creation of a novel spacecraft. The spacecraft is based on the dynamic Casimir effect, in which electromagnetic radiation is emitted when an uncharged mirror is properly accelerated in the vacuum. The radiative reaction produces a dissipative force on the mirror that tends to resist the acceleration of the mirror. This force can be used to accelerate a spacecraft attached to the mirror. We also show that, in principal, one could obtain the power to operate the accelerated mirror in such a spacecraft using energy extracted from the quantum vacuum using the standard Casimir effect witha parallel plate geometry. Unfortunately the method as currently conceived generates a miniscule thrust, and is no more practical than a spacewarp, yet it does provide an interesting demonstration of our current understanding of the physics of the quantized electromagnetic field in vacuum.
18 pages, 3 figures
References in corpus (6)
- New Developments in the Casimir Effect
- Nonlinear Micromechanical Casimir Oscillator
- Fluctuations and dissipation for a mirror in vacuum
- Surface impedance and the Casimir force
- Vacuum fluctuation force on a rigid Casimir cavity in a gravitational field
- Of Some Theoretical Significance: Implications of Casimir Effects
Cited by in corpus (6)
- Experimental and theoretical investigation of angular dependence of the Casimir force between sinusoidally corrugated surfaces
- On Newton's Third Law and its Symmetry-Breaking Effects
- Dynamical Casimir effect in a periodically changing domain: A dynamical systems approach
- Gedanken experiments with Casimir forces, vacuum energy, and gravity
- A Novel Interpolation-Based Method for Solving the One-Dimensional Wave Equation on a Domain with a Moving Boundary
- The Casimir Atomic Pendulum