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DAC-board based X-band EPR spectrometer with arbitrary waveform control

机译:具有任意波形控制的基于DAC板的X波段EPR光谱仪

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摘要

We present arbitrary control over a homogenous spin system, demonstrated on a simple, home-built, electron paramagnetic resonance (EPR) spectrometer operating at 8–10 GHz (X-band) and controlled by a 1 GHz arbitrary waveform generator (AWG) with 42 dB (i.e. 14-bit) of dynamic range. Such a spectrometer can be relatively easily built from a single DAC (digital to analog converter) board with a modest number of stock components and offers powerful capabilities for automated digital calibration and correction routines that allow it to generate shaped X-band pulses with precise amplitude and phase control. It can precisely tailor the excitation profiles “seen” by the spins in the microwave resonator, based on feedback calibration with experimental input. We demonstrate the capability to generate a variety of pulse shapes, including rectangular, triangular, Gaussian, sinc, and adiabatic rapid passage waveforms. We then show how one can precisely compensate for the distortion and broadening caused by transmission into the microwave cavity in order to optimize corrected waveforms that are distinctly different from the initial, uncorrected waveforms. Specifically, we exploit a narrow EPR signal whose width is finer than the features of any distortions in order to map out the response to a short pulse, which, in turn, yields the precise transfer function of the spectrometer system. This transfer function is found to be consistent for all pulse shapes in the linear response regime. In addition to allowing precise waveform shaping capabilities, the spectrometer presented here offers complete digital control and calibration of the spectrometer that allows one to phase cycle the pulse phase with 0.007° resolution and to specify the inter-pulse delays and pulse durations to ≤250 ps resolution. The implications and potential applications of these capabilities will be discussed.
机译:我们展示了对同质自旋系统的任意控制,并在一个简单的自制电子顺磁共振(EPR)光谱仪上进行了演示,该光谱仪在8-10 GHz(X波段)下运行,并由1 GHz任意波形发生器(AWG)控制,并具有42 dB(即14位)的动态范围。这种光谱仪可以很容易地由单个DAC(数模转换器)板构建,带有少量的库存组件,并提供强大的功能来进行自动数字校准和校正例程,从而可以生成具有精确幅度的成形X波段脉冲和相位控制。基于带有实验输入的反馈校准,它可以精确地调整微波谐振器中自旋“看到”的激励曲线。我们展示了生成各种脉冲形状的能力,包括矩形,三角形,高斯,正弦和绝热快速通过波形。然后,我们展示了如何精确补偿由于传输到微波腔中而引起的失真和展宽,以优化与初始未校正波形明显不同的校正波形。具体来说,我们利用窄的EPR信号,其宽度比任何失真的特征都细,以绘制出对短脉冲的响应,进而产生光谱仪系统的精确传递函数。发现该传递函数对于线性响应范围中的所有脉冲形状都是一致的。除了提供精确的波形整形功能外,此处介绍的光谱仪还提供了光谱仪的完整数字控制和校准功能,使人们能够以0.007°的分辨率对脉冲相位进行相位循环,并指定脉冲间延迟和脉冲持续时间≤250 ps解析度。将讨论这些功能的含义和潜在应用。

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