Dante Stefania, Duval Daphné, Sepúlveda Borja, González-Guerrero Ana Belen, Sendra José Ramón, Lechuga Laura M
Research Center on Nanoscience and Nanotechnology CIN2 (CSIC) and CIBER-BBN, Campus UAB, 08193 Bellaterra, Barcelona, Spain.
Opt Express. 2012 Mar 26;20(7):7195-205. doi: 10.1364/OE.20.007195.
We present the theoretical and the experimental implementation of an all-optical phase modulation system in integrated Mach-Zehnder Interferometers to solve the drawbacks related to the periodic nature of the interferometric signal. Sensor phase is tuned by modulating the emission wavelength of low-cost commercial laser diodes by changing their output power. FFT deconvolution of the signal allows for direct phase readout, immune to sensitivity variations and to light intensity fluctuations. This simple phase modulation scheme increases the signal-to-noise ratio of the measurements in one order of magnitude, rendering in a sensor with a detection limit of 1.9·10⁻⁷ RIU. The viability of the all-optical modulation approach is demonstrated with an immunoassay detection as a biosensing proof of concept.
我们展示了集成马赫曾德尔干涉仪中全光相位调制系统的理论和实验实现,以解决与干涉信号周期性相关的缺点。通过改变低成本商用激光二极管的输出功率来调制其发射波长,从而调整传感器相位。信号的快速傅里叶变换(FFT)去卷积实现了直接相位读出,不受灵敏度变化和光强波动的影响。这种简单的相位调制方案将测量的信噪比提高了一个数量级,得到了一个检测限为1.9·10⁻⁷RIU的传感器。作为生物传感概念验证的免疫分析检测证明了全光调制方法的可行性。