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Biomedical subjects

W J Padilla

Publications and source records attributed to W J Padilla.

3 recordsLinked to original sources

Dynamical electric and magnetic metamaterial response at terahertz frequencies.

Utilizing terahertz time domain spectroscopy, we have characterized the electromagnetic response of a planar array of split ring resonators (SRRs) fabricated upon a high resistivity GaAs substrate. The measured frequency dependent magnetic and electric resonances are in excellent agreement with theory and simulation. For two polarizations, the SRRs yield a negative electric response (epsilon < 0). We demonstrate, for the first time, dynamical control of the electrical response of the SRRs through photoexcitation of free carriers in the substrate. An excited carrier density of approximately 4 x 10(16) cm(-3) is sufficient to short the gap of the SRRs, thereby turning off the electric resonance, demonstrating the potential of such structures as terahertz switches. Because of the universality of metamaterial response over many decades of frequency, these results have implications for other regions of the electromagnetic spectrum.

Journal Article↗

Terahertz magnetic response from artificial materials.

We show that magnetic response at terahertz frequencies can be achieved in a planar structure composed of nonmagnetic conductive resonant elements. The effect is realized over a large bandwidth and can be tuned throughout the terahertz frequency regime by scaling the dimensions of the structure. We suggest that artificial magnetic structures, or hybrid structures that combine natural and artificial magnetic materials, can play a key role in terahertz devices.

Journal Article↗

Creating a buttonless casting by using preformed wax sprues.

Calculating precisely the amount of metal in a casting has major advantages over traditional methods. Eliminating guesswork permits making a casting without a button, which in turn facilitates the use of a larger percent of new metal with subsequent castings. This article gives details for calculating the amount of metal to be used.

Dental Alloys↗