We propose a simple model for the origin of pink noise (or 1/f fluctuation) based on the beat of cooperative waves. These cooperative waves arise spontaneously in a system with synchronization, resonance, and infrared divergence. Many cooperative waves with close frequencies can produce signals of arbitrary small frequencies from a system of small size. This beat mechanism can be understood as amplitude modulation. The pink noise can appear after the demodulation process, which produces a variety of pink noise in many fields. The pink noise thus formed from the beat has nothing to do with dissipation or long-time memory. We also suggest new ways of looking at pink noise in shallow earthquakes, solar flares, and stellar activities.
翻译:我们根据合作波浪的节奏提出粉红色噪音(或1/f波动)来源的简单模型。 这些合作波在一个同步、共振和红外线差异的系统中自发地产生。 许多具有近频的合作波可以从一个小型系统产生任意小频率的信号。 这种节奏机制可以被理解为振动调控。 粉红色噪音可以在降压过程之后出现, 在许多领域产生各种粉色噪音。 由节奏形成的粉红色噪音与消散或长期记忆无关。 我们还提出了在浅地震、 太阳耀斑和恒星活动中观察粉红色噪音的新方法 。