Simonsen Anders, Saarinen Sampo Antero, Sanchez Juan Diego, Ardenkjær-Larsen Jan Henrik, Schliesser Albert, Polzik Eugene Simon
Opt Express. 2019 Jun 24;27(13):18561-18578. doi: 10.1364/OE.27.018561.
We report a radio-frequency-to-optical converter based on an electro-optomechanical transduction scheme where the electrical, optical, and mechanical interface was integrated on a chip and operated with a fiber-coupled optical setup. The device was designed for field tests in a magnetic resonance scanner where its small form-factor and simple operation is paramount. For the appurtenant magnetic resonance detection circuit at 32 MHz, we demonstrate transduction with an intrinsic magnetic field sensitivity of 8 fT/Hz, noise figure 2.3 dB, noise temperature 210 K, voltage noise 99 pV/Hz, and current noise 113 pA/Hz, all in a 3 dB-bandwidth of 12 kHz. Such sensitivity and bandwidth make the transducer a valuable alternative to conventional electronic preamplifiers that additionally is directly compatible with fiber communication networks.
我们报道了一种基于电光机械转换方案的射频到光转换器,其中电、光和机械接口集成在一个芯片上,并通过光纤耦合光学装置进行操作。该设备专为磁共振扫描仪中的现场测试而设计,其小尺寸和简单操作至关重要。对于32MHz的附属磁共振检测电路,我们展示了其具有8 fT/Hz的固有磁场灵敏度、2.3dB的噪声系数、210K的噪声温度、99 pV/Hz的电压噪声和113 pA/Hz的电流噪声的转换,所有这些均在12kHz的3dB带宽内。这种灵敏度和带宽使该换能器成为传统电子前置放大器的有价值替代品,并且它还与光纤通信网络直接兼容。