School of Physics and Astronomy, Monash University, Victoria 3800, Australia.
Phys Rev Lett. 2019 Mar 8;122(9):090201. doi: 10.1103/PhysRevLett.122.090201.
We encode the sequence of prime numbers into simple superpositions of identical waves, mimicking the archetypal prime number sieve of Eratosthenes. The primes are identified as zeros accompanied by phase singularities in a physically generated wave field for integer valued momenta. Similarly, primes are encoded in the diffraction pattern from a simple single aperture and in the harmonics of a single vibrating resonator. Further, diffraction physics connections to number theory reveal how to encode all Gaussian primes, twin primes, and how to construct wave fields with amplitudes equal to the divisor function at integer spatial frequencies. Remarkably, all of these basic diffraction phenomena reveal that the naturally irregular sequence of primes can arise from trivially ordered wave superpositions.
我们将素数序列编码为相同波的简单叠加,模拟了 Eratosthenes 的典型素数筛。对于整数动量的物理产生的波场,素数被识别为伴随相位奇点的零。同样,素数被编码在简单单孔径的衍射图案中和单个振动谐振器的谐波中。此外,衍射物理与数论的联系揭示了如何对所有高斯素数、孪生素数进行编码,以及如何构建具有整数空间频率处的除数函数幅度的波场。值得注意的是,所有这些基本的衍射现象都表明,自然不规则的素数序列可以从平凡的波叠加中产生。