论文标题
宽带电动动作传感技术,带有用于低质量暗物质轴测检测的电线
Broadband Electrical Action Sensing Techniques with conducting wires for low-mass dark matter axion detection
论文作者
论文摘要
由于逆Primakoff效应,已经表明,当轴与DC磁性B场相互作用时,所得的电动作用将产生AC电动作用力,该电动力在轴上的Compton频率下振荡,并且可以作为振荡有效的磁电流边界源建模。我们使用此结果来计算使用准静态技术对低质量轴的敏感性。首先,我们计算当DC B场在空间上恒定并表明其具有与轴突质量成正比的灵敏度时,计算电偶极天线(直导线)中诱导的电流。此后,我们通过利用空间变化的直流B场的全部范围来扩展拓扑。通过将1D导电线转换为2D绕组来实现此扩展,以完全连接有效的磁电流边界源,从而将其连接到全轴诱导的电动作用中。在这种情况下,导体成为线圈绕组,在该绕组中诱导的电压与绕组数量成比例地增加。我们研究了两种不同的拓扑:第一使用单个绕组,并伴侣与绕组中产生的有效的短路电流伴侣,使用敏感的低阻抗鱿鱼放大器读出:第二次使用多个绕组,每次转弯都会有效地增加电压输出成比例的绕组数。通过实现低温低输入阻抗电压放大器来优化此配置中的读取。最终结果是一种新的宽带电动动作传感技术,其数量级提高了灵敏度,该技术与轴突光子耦合成正比,能够检测QCD暗物质轴。
Due to the inverse Primakoff effect it has been shown that when axions interact with a DC magnetic B-field the resulting electrical action will produce an AC electromotive force which oscillates at the Compton frequency of the axion, and may be modeled as an oscillating effective impressed magnetic current boundary source. We use this result to calculate the sensitivity of new experiments to low-mass axions using the quasi-static technique. First, we calculate the current induced in an electric dipole antenna (straight conducting wire) when the DC B-field is spatially constant and show that it has a sensitivity proportional to the axion mass. Following this we extend the topology by making use of the full extent of the spatially varying DC B-field. This extension is achieved by transforming the 1D conducting wire to a 2D winding, to fully link the effective magnetic current boundary source and thus couple to the full axion induced electrical action. In this case the conductor becomes a coil winding where the voltage induced across the winding increases proportionally to the number of windings. We investigate two different topologies: The 1st uses a single winding, and couples to the effective short circuit current generated in the winding, which is read out using a sensitive low impedance SQUID amplifier: The 2nd uses multiple windings, with every turn effectively increasing the the voltage output proportional to the winding number. The read out of this configuration is optimised by implementing a cryogenic low-noise high input impedance voltage amplifier. The end result is a new Broadband Electrical Action Sensing Techniques with orders of magnitude improved sensitivity, which is linearly proportional to the axion photon coupling and capable of detecting QCD dark matter axions.