概括
我们开发了一个可调节的高斯波段过渡波器,使用衍射格. 这种过器允许独立调整中心波长和带宽,而不会影响峰值传输率,提供多功能多功能光学过功能.
科学领域:
- 光学和光子学 在光学和光子学.
- 光学工程是指光学工程.
背景情况:
- 可调节的光学过器是各种光子应用中的关键组件.
- 现有的可调节过器经常受到调节范围,带宽和传输率之间的权衡的影响.
研究的目的:
- 提出并实验证明一种可调节的高斯波段过渡波器.
- 为了实现过器中心波长和带宽的独立和简单调整.
主要方法:
- 过器使用衍射格子和空间模式合.
- 通过调整格子的位置 (用于中心波长) 和角度 (用于带宽) 来实现可调性.
主要成果:
- 中心波长从775nm调整到805nm.
- 带宽从0.79纳米调整到4.65纳米.
- 在调范围内的峰值传输率在很大程度上不受影响.
结论:
- 拟议的基于衍射格式的波器提供了独立的,广泛的中心波长和带宽调整能力.
- 这种方法通过在调过程中保持高峰传输率提供了显著的优势.
- 展示的可调节过器适用于需要灵活光谱成型的应用.
相关概念视频
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In signal processing, bandpass sampling is an effective technique for sampling signals that have most of their energy concentrated within a narrow frequency band. This type of signal is known as a bandpass signal. The key principle of bandpass sampling involves sampling the signal at a rate that is greater than twice the signal's bandwidth to prevent aliasing.
A bandpass signal has a spectrum with a lower frequency limit, denoted as ω1, and an upper frequency limit, denoted as ω2....
A bandpass signal has a spectrum with a lower frequency limit, denoted as ω1, and an upper frequency limit, denoted as ω2....
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Passive filters are utilized to shape the frequency spectrum of signals across a diverse array of applications. These filters, using only passive elements like resistors (R), inductors (L), and capacitors (C), are capable of selectively allowing or blocking certain frequency ranges without the need for external power sources.
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Low-pass filters are designed to transmit signals with frequencies lower than the cutoff frequency, ωc, and attenuate those above it. The cutoff...
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Active filters are electronic circuits that use operational amplifiers (op-amps), resistors, and capacitors to filter out unwanted frequency components from a signal. A first-order low-pass active filter is designed to pass signals with a frequency lower than a certain cutoff frequency and attenuate frequencies higher than that cutoff frequency. The transfer function for a first-order low-pass active filter is:
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