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Characterization of emission from thermo-optical tweezers during spontaneous self-assembly

机译:自发自组装期间热光镊子排放的特征

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It is well known that thermo-optical tweezers leads to deposition of continuous patterns on substrates mediated by Marangoni convection currents around micro-bubbles. While performing the deposition, we also find that there is an accompanying emission. On first look, one would expect this to be thermal broadband emission. However, the spectrum of emission seems to start from green and extend all the way to near infra red. Such peak wavelengths would correspond to 3000 K or even higher. Generation of such high temperatures at the local hot spot would melt the glass substrate. However, such melting facets have never been seen. Thus we speculate that the emission is actually two photon fluorescence from the incident light on the deposited pattern. Soft Oxometallatc material is known to exhibit photoluminescence in the green-red region of spectrum. This kind of emission is also observed in carbon nanotubes when incident with a focused 1064 nm light, the origin of which appears to be similar multiphoton fluorescence processes.
机译:众所周知,热光镊子导致在Marrangoni对流电流周围围绕微气泡介导的衬底上的连续图案。在执行沉积时,我们还发现有伴随的排放。首先看,人们希望这是热宽带排放。然而,排放频谱似乎从绿色开始,一直延伸到红外线附近。这种峰值波长将对应于3000k甚至更高。在局部热点处产生这种高温将熔化玻璃基板。然而,这种熔化的面从未见过。因此,我们推测,发射实际上是来自沉积图案上的入射光的两个光子荧光。已知软氧化铝材料在光谱区域中表现出光致发光。当用聚焦的1064nm光入射时,在碳纳米管中也观察到这种发射,其来源似乎是类似的多选荧光方法。

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