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Computing with solitons in bulk media.

机译:使用大容量媒体中的孤子进行计算。

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摘要

We propose a new physical medium for computation: colliding solitons. As particle-like nonlinear waves, solitons can carry and exchange information, thus acting as computing agents. Optical solitons have pulse widths measured in picoseconds or femtoseconds, and this approach could ultimately offer an alternative to electronics.; This work grew from an abstract computational model called the particle machine (PM), which uses discrete propagating and colliding particles to compute. We show that this model is universal, and describe several efficient PM algorithms, such as convolution, certain systolic-array computations, and linear-time, arbitrary-precision arithmetic, including an iterative algorithm for division. This leads to the question of physical instantiation of PMs that could do useful computation, and optical solitons provide a natural example.; Propagating solitons carry information in their amplitudes, velocities, and phases. We show how colliding solitons can transfer such information in nontrivial ways, thus making computation possible. We characterize the state transformations caused by collisions in a particular system of coupled optical solitons—the Manakov system—and show how to implement several computations, such as a NOT processor and certain other reversible operators.; Our results resolve some questions about computational power in different soliton systems, and serve as first steps towards realizing a practical soliton-based computer.
机译:我们提出了一种新的物理计算介质:碰撞孤子。作为粒子状的非线性波,孤子可以携带和交换信息,因此可以充当计算代理。光学孤子的脉冲宽度以皮秒或飞秒为单位,这种方法最终可以为电子技术提供替代方案。这项工作源于称为粒子机 PM )的抽象计算模型,该模型使用离散的传播粒子和碰撞粒子进行计算。我们证明了该模型是通用的,并描述了几种有效的PM算法,例如卷积,某些脉动阵列计算以及线性时间,任意精度算法,包括用于除法的迭代算法。这导致了可以进行有用计算的PM的物理实例化问题,而光学孤子提供了一个自然的例子。孤子的传播带有其幅度,速度和相位的信息。我们展示了碰撞的孤子如何能够以非平凡的方式传递此类信息,从而使计算成为可能。我们描述了耦合光孤子的一个特定系统(马纳科夫系统)中由碰撞引起的状态变换,并展示了如何实现多种计算,例如NOT处理器和某些其他可逆算符。我们的结果解决了有关不同孤子系统中计算能力的一些问题,并且是实现基于实际孤子的计算机的第一步。

著录项

  • 作者单位

    Princeton University.;

  • 授予单位 Princeton University.;
  • 学科 Computer Science.; Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 141 p.
  • 总页数 141
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自动化技术、计算机技术;
  • 关键词

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