JOURNAL ARTICLE

High-Q sapphire-rutile frequency-temperature compensated microwave dielectric resonators

Michael E. TobarJerzy KrupkaJohn G. HartnettE.N. IvanovR.A. Woode

Year: 1998 Journal:   IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control Vol: 45 (3)Pages: 830-836   Publisher: Institute of Electrical and Electronics Engineers

Abstract

A sapphiro-rutile composite resonator was constructed from a cylindrical sapphire monocrystal with two thin disks of monocrystal rutile held tightly against the ends. Because rutile exhibits low loss and an opposite temperature coefficient of permittivity to sapphire, it is an ideal material for compensating the frequency-temperature dependence of a sapphire resonator. Most of the electromagnetic modes in the composite structure exhibited turning points (or compensation points) in the frequency-temperature characteristic. The temperatures of compensation for the WG quasi TM modes were measured to be below 90 K with Q-factors of the order of a few million depending on the mode. For WG quasi TE modes, the temperatures of compensation were measured to be between 100 to 160 K with Q-factors of the order of a few hundreds of thousands, depending on the mode. The second derivatives of the compensation points were measured to be of the order 0.1 ppm/K(2 ), which agreed well with the predicted values.

Keywords:
Sapphire Materials science Microwave Dielectric Resonator Optoelectronics Dielectric resonator Rutile Electromagnetic heating Optics Electrical engineering Engineering Physics Telecommunications Laser

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