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Sampling from exponential distributions in the time domain with superparamagnetic tunnel junctions

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arxiv 2412.10317 v2 pith:UTVGWILE submitted 2024-12-13 cs.ET

Sampling from exponential distributions in the time domain with superparamagnetic tunnel junctions

classification cs.ET
keywords distributedexponentiallyrandomsuperparamagnetictemporaltimetunnelcircuit
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In the superparamagnetic regime, magnetic tunnel junctions switch between two resistance states due to random thermal fluctuations. The dwell time distribution in each state is exponential. We sample this distribution using a temporal encoding scheme, in which information is encoded in the time at which the device switches between its resistance states. We then develop a circuit element known as a probabilistic delay cell that applies an electrical current step to a superparamagnetic tunnel junction and a temporal measurement circuit that measures the timing of the first switching event. Repeated experiments confirm that these times are exponentially distributed. Temporal processing methods then allow us to digitally compute with these exponentially distributed probabilistic delay cells. We describe how to use these circuits in a Metropolis-Hastings stepper and in a weighted random sampler, both of which are computationally intensive applications that benefit from the efficient generation of exponentially distributed random numbers.

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