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Eric C. Hannah

Publications and source records attributed to Eric C. Hannah.

2 recordsLinked to original sources

Conceptual Design of a Micron-Scale Atomic Clock

A theoretical proposal for reducing an entire atomic clock to micron dimensions. A phosphorus or nitrogen atom is introduced into a fullerene cage. This endohedral fullerene is then coated with an insulating shell and a number of them are deposited as a thin layer on a silicon chip. Next to this layer a GMR sensor is fabricated which is close to the endohedral fullerenes. This GMR sensor measures oscillating magnetic fields on the order of micro-gauss from the nuclear spins varying at the frequency of the hyperfine transition (413 MHz frequency). Given the micron scale and simplicity of this system only a few transistors are needed to control the waveforms and to perform digital clocking. This new form of atomic clock exhibits extremely low power (nano watts), high vibration and shock resistance, stability on the order of 10^{-9}, and is compatible with MEMS fabrication and chip integration. As GMR sensors continue to improve in sensitivity the stability of this form of atomic clock will increase proportionately.

physics.atom-ph

Modeling Copper Cables and Connectors

High-speed data busses constructed from copper components are both difficult to model and important to accurately simulate. Using analytic signal theory and an extension of the skin effect for non-uniform conductivity, experimental data taken from IEEE 1394-1995 cables and connectors is used to predict the transfer function of a 4.5 meter cable with two connectors. With these techniques any length of cable between two connectors can be simulated with high accuracy, including all the cable and connector losses and the infinitely summed standing waves that occur between the connectors.

physics.ins-det