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Electrocaloric Properties of Potassium Tantalate Niobate Crystals

Electrocaloric Properties of Potassium Tantalate Niobate Crystals PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Electrocaloric Properties of Potassium Tantalate Niobate Crystals

Electrocaloric Properties of Potassium Tantalate Niobate Crystals PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Nonlinear and Electro-optic Properties of Potassium Tantalate Niobate (KTN)

Nonlinear and Electro-optic Properties of Potassium Tantalate Niobate (KTN) PDF Author: Ron Hartmayer
Publisher:
ISBN:
Category :
Languages : en
Pages : 130

Book Description


Ferroelectric Materials and Ferroelectricity

Ferroelectric Materials and Ferroelectricity PDF Author: T. F. Connolly
Publisher: Springer Science & Business Media
ISBN: 1475706987
Category : Science
Languages : en
Pages : 692

Book Description
This volume is a joint effort of the Research Materials Information Center (RMIC) of the Solid State Division at Oak Ridge National Laboratory and the Libraries and Information Systems Center at Bell Telephone Laboratories (BTL) Murray Hill, N. J. The Research Materials Information Center has, since 1963, been answering inquiries on the avail ability, preparation, and properties of inorganic solid-state research materials. The preparation of bibliographies has been essential to this function, and the interest in ferroelectrics led to the compila tion of the journal and report literature on that subject. The 1962 book Ferroelectric Crystals, by Jona and Shirane, was taken as a cutoff point, and all papers through mid-1969 received by the Center have been included. The Libraries and Information Systems Center of BTL has, over a period of years, developed a proprie tary package of computer programs called BELDEX, which formats and generates indexes to biblio graphic material. This group therefore undertook to process RMIC's ferroelectric references by BELDEX so that both laboratories could have the benefit of an indexed basic bibliography in this important research area.

Optical Properties of Potassium Tantalate Niobate

Optical Properties of Potassium Tantalate Niobate PDF Author: Scott Kie Manlief
Publisher:
ISBN:
Category : Ferroelectric
Languages : en
Pages : 139

Book Description


Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports PDF Author:
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 1388

Book Description


Ferroelectric Properties of Sodium Tantalate-potassium Tantalate Mixed Crystals

Ferroelectric Properties of Sodium Tantalate-potassium Tantalate Mixed Crystals PDF Author: Thomas Gene Davis
Publisher:
ISBN:
Category :
Languages : en
Pages : 110

Book Description


Study of Striations in Potassium Tantalate Niobate Using Electro-optic Effect

Study of Striations in Potassium Tantalate Niobate Using Electro-optic Effect PDF Author: Meng Ping Chiao
Publisher:
ISBN:
Category :
Languages : en
Pages : 168

Book Description


Temperature Gradient Transport Growth of Potassium Tantalate Niobate, KTa1xNbxO3, Single Crystals

Temperature Gradient Transport Growth of Potassium Tantalate Niobate, KTa1xNbxO3, Single Crystals PDF Author: Kent Wayne Goeking
Publisher:
ISBN:
Category : Crystal growth
Languages : en
Pages : 88

Book Description


Ferroelectrics Literature Index

Ferroelectrics Literature Index PDF Author: T. F. Connolly
Publisher: Springer Science & Business Media
ISBN: 1468462105
Category : Science
Languages : en
Pages : 713

Book Description
Research on ferroelectricity and ferroelectric materials started in 1920 with the discovery by Valasek that the variation of spontaneous polarization in Rochelle salt with sign and magnitude of an applied electric field traced a complete and reproducible hysteresis loop. Activity in the field was sporadic until 1935, when Busch and co-workers announced the observation of similar behavior in potassium dihydrogen phosphate and related compounds. Progress thereafter continued at a modest level with the undertaking of some theoretical as well as further experimental studies. In 1944, von Hippel and co-workers discovered ferroelectricity in barium titanate. The technological importance of ceramic barium titanate and other perovskites led to an upsurge of interest, with many new ferroelectrics being identified in the following decade. By 1967, about 2000 papers on various aspects of ferroelectricity had been published. The bulk of this widely dispersed literature was concerned with the experimental measurement of dielectric, crystallographic, thermal, electromechanical, elastic, optical, and magnetic properties. A critical and excellently organized cpmpilation based on these data appeared in 1969 with the publica tion of Landolt-Bornstein, Volume 111/3. This superb tabulation gave instant access to the results in the literature on nearly 450 pure substances and solid solutions of ferroelectric and antiferroelectric materials. Continuing interest in ferroelectrics, spurred by the growing importance of electrooptic crystals, resulted in the publication of almost as many additional papers by the end of 1969 as had been surveyed in Landolt-Bornstein.

Advances in Lead-Free Piezoelectric Materials

Advances in Lead-Free Piezoelectric Materials PDF Author: Jiagang Wu
Publisher: Springer
ISBN: 9811089981
Category : Technology & Engineering
Languages : en
Pages : 529

Book Description
This book systematically reviews the history of lead-free piezoelectric materials, including the latest research. It also addresses a number of important issues, such as new types of materials prepared in a multitude of sizes, structural and physical properties, and potential applications for high-performance devices. Further, it examines in detail the state of the art in lead-free piezoelectric materials, focusing on the pathways to modify different structures and achieve enhanced physical properties and new functional behavior. Lastly, it discusses the prospects for potential future developments in lead-free piezoelectric materials across disciplines and for multifunctional applications. Given its breadth of coverage, the book offers a comprehensive resource for graduate students, academic researchers, development scientists, materials producers, device designers and applications engineers who are working on or are interested in advanced lead-free piezoelectric materials.