FC1500-ULNnova
光学频率梳
Specifications
先进的功能和优点
- [100 Hz-2 MHz]的积分相位噪声<100 mrad
- > 1 MHz高带宽执行器,用于CEO和重复频率
- 全光纤耦合CEO频率生成
- 一站式计量系统,完全自动化包括数据分析软件
- 为连续运行而设计
FC1500-250-ULN 型号2 | |
---|---|
梳齿间距 | 250 MHz |
相对精度 | 1 x 10-17 (τ >100 s)* |
相对稳定度 | 1 x 10-16 in 1 s1), 1 x 10-18 in 1000 s1), 5 x 10-13 in 1 s▵ |
积分相位噪声 | <100 mrad [100 Hz - 2 MHz] |
线宽 | <1Hz* ♦ |
梳齿间距的调整范围 | >4 MHz |
CEO调整范围 | >250 MHz, |
光谱范围 | > 25 nm(选配M-VIS时为500-1050 nm,选配M-NIR时为1050-2100 nm) |
* 锁相到光学参考
▵锁相至射频参考
♦ 受限于谱仪分辨率带宽
Description
FC1500-ULNnova 是Menlo System最新型的具有终极性能的光学频率梳系统,它的核心包括基于超低噪声(ULN)Figure 9® 锁模专利技术的,代号为“Nova”的光梳振荡器。此振荡器的强化设计使Nova稳健性大为提高,保证了Nova对声学噪声和热漂移极其不敏感。Nova自由运行时单个梳齿线宽仅为15 kHz,确保FC1500-ULNnova支持10-19量级*的频率稳定度 (平均时间为1秒)。
随着当今对时间和频率信号的稳定度和准确度的需求不断提高,对频率参考精度要求越来越高。然而,即使是最好的光学参考,其光谱覆盖范围也非常有限。FC1500-ULNnova能够消除这些限制,支持将一个稳定光学参考的光谱纯度转移到500-2000 nm的整个波长范围。这一独特的功能支持用户能将所有的不同频率的CW激光器同时稳定在一个绝对的频率参考上,使用户能够比对不同的(光学)频率参考,并将其作为光钟的“齿轮“。对频率稳定度的评估是通过对两个独立的光学频率梳之间的环外比对来完成,这样的光梳-光梳比对是每台光梳系统在出厂验收时所必经的质检环节。根据您的应用所需的稳定度和准确度,Menlo提供两个版本可供您选择。
*小数ModADEV。有关频率稳定度的指标将很快更新。
在此观看FC1500-250-ULN的系统演示:
在此观看我们关于FC1500-250-ULNnova 的应用影片:
Applications
Application Notes
- SCIENTIFIC PUBLICATION: 20 Years and 20 Decimal Digits: A Journey With Optical Frequency Combs
- SCIENTIFIC PUBLICATION: Real-time phase tracking for wide-band optical frequency measurements at the 20th decimal place
- SCIENTIFIC PUBLICATION: Demonstration of 4.8 × 10E−17 stability at 1 s for two independent optical clocks
- SCIENTIFIC PUBLICATION: Frequency comb assisted diode laser spectroscopy for measurement of microcavity dispersion
- SCIENTIFIC PUBLICATION: Sub-Doppler optical-optical double-resonance spectroscopy using a cavity-enhanced frequency comb probe
- SCIENTIFIC PUBLICATION: Sub-Doppler Double-Resonance Spectroscopy of Methane Using a Frequency Comb Probe
- SCIENTIFIC PUBLICATION: Optical frequency metrology
- SCIENTIFIC PUBLICATION: Space-borne frequency comb metrology
- SCIENTIFIC PUBLICATION: Photonic microwave signals with zeptosecond-level absolute timing noise
- SCIENTIFIC PUBLICATION: Compact low-noise photonic microwave generation from commercial low-noise lasers
- SCIENTIFIC PUBLICATION: Comparison of optical frequency comb and sapphire loaded cavity microwave oscillators
- SCIENTIFIC PUBLICATION: All polarization‑maintaining fiber laser architecture for robust femtosecond pulse generation
- SCIENTIFIC PUBLICATION: Optical Frequency Transfer over a Single-Span 1840 km Fiber Link
- TECHNICAL ARTICLE: Bringing quantum networks to life
- SCIENTIFIC PUBLICATION: High-bandwidth transfer of phase stability through a fiber frequency comb
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Anna Horoschenkoff
Your direct line to our expert
Data sheets
Product literature
Ordering information
- Product Code
- FC1500-ULNnova
Headquarters
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Menlo Systems, Inc.
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