Designing Bulk Acoustic Wave Resonators For Parametric Amplification Of Spin Waves PDF Download

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Designing Bulk Acoustic Wave Resonators for Parametric Amplification of Spin Waves

Designing Bulk Acoustic Wave Resonators for Parametric Amplification of Spin Waves
Author: Pratim Chowdhury
Publisher:
Total Pages: 54
Release: 2014
Genre: Magnetostatics
ISBN:

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Spintronics is an emerging field of research dealing with devices that can potentially exploit the additional degree of freedom provided by the electron spin along with or instead of the conventional electronic charge. One of the most promising aspects of spintronics is the potential use of magnetostatic spin waves as information carriers in logic devices, where information is encoded in the electron spin. A major obstacle in making this a practically viable alternative to conventional electronics is the very large intrinsic spin wave damping in most known magnetic materials. In this work, we propose a new technique of parametrically amplifying spin waves by means of acoustic resonators. An equivalent electrical model of an acoustic resonator was developed to efficiently design the acoustic resonators for the desired frequency ranges. Backward volume magnetostatic spin waves were measured in Yttrium Iron Garnet films at frequencies of 1.7 GHz or higher, requiring acoustic resonators to be designed for at least 3.4 GHz or higher for parametric amplification. Acoustic resonators with resonance frequency of 4 GHz were fabricated.


Tuneable Film Bulk Acoustic Wave Resonators

Tuneable Film Bulk Acoustic Wave Resonators
Author: Spartak Gevorgian
Publisher: Springer Science & Business Media
Total Pages: 255
Release: 2013-02-14
Genre: Technology & Engineering
ISBN: 1447149440

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To handle many standards and ever increasing bandwidth requirements, large number of filters and switches are used in transceivers of modern wireless communications systems. It makes the cost, performance, form factor, and power consumption of these systems, including cellular phones, critical issues. At present, the fixed frequency filter banks based on Film Bulk Acoustic Resonators (FBAR) are regarded as one of the most promising technologies to address performance -form factor-cost issues. Even though the FBARs improve the overall performances the complexity of these systems remains high. Attempts are being made to exclude some of the filters by bringing the digital signal processing (including channel selection) as close to the antennas as possible. However handling the increased interference levels is unrealistic for low-cost battery operated radios. Replacing fixed frequency filter banks by one tuneable filter is the most desired and widely considered scenario. As an example, development of the software based cognitive radios is largely hindered by the lack of adequate agile components, first of all tuneable filters. In this sense the electrically switchable and tuneable FBARs are the most promising components to address the complex cost-performance issues in agile microwave transceivers, smart wireless sensor networks etc. Tuneable Film Bulk Acoustic Wave Resonators discusses FBAR need, physics, designs, modelling, fabrication and applications. Tuning of the resonant frequency of the FBARs is considered. Switchable and tuneable FBARs based on electric field induced piezoelectric effect in paraelectric phase ferroelectrics are covered. The resonance of these resonators may be electrically switched on and off and tuned without hysteresis. The book is aimed at microwave and sensor specialists in the industry and graduate students. Readers will learn about principles of operation and possibilities of the switchable and tuneable FBARs, and will be given general guidelines for designing, fabrication and applications of these devices.


Acoustic Wave and Electromechanical Resonators

Acoustic Wave and Electromechanical Resonators
Author: Humberto Campanella
Publisher: Artech House
Total Pages: 364
Release: 2010
Genre: Technology & Engineering
ISBN: 1607839784

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This groundbreaking book provides you with a comprehensive understanding of FBAR (thin-film bulk acoustic wave resonator), MEMS (microelectomechanical system), and NEMS (nanoelectromechanical system) resonators. For the first time anywhere, you find extensive coverage of these devices at both the technology and application levels. This practical reference offers you guidance in design, fabrication, and characterization of FBARs, MEMS and NEBS. It discusses the integration of these devices with standard CMOS (complementary-metal-oxide-semiconductor) technologies, and their application to sensing and RF systems. Moreover, this one-stop resource looks at the main characteristics, differences, and limitations of FBAR, MEMS, and NEMS devices, helping you to choose the right approaches for your projects. Over 280 illustrations and more than 130 equations support key topics throughout the book.


Design, Fabrication and Testing of Silicon Resonators for Opto-acoustic Parametric Amplifiers

Design, Fabrication and Testing of Silicon Resonators for Opto-acoustic Parametric Amplifiers
Author: Jose Torres
Publisher:
Total Pages:
Release: 2013
Genre:
ISBN:

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[Truncated abstract] The development of gravitational-wave detectors has involved pushing the frontiers oftechnology in many areas. One of these efforts, km-long optical cavities with high optical power, led to the realisation that 3-mode opto-acoustic interactions could occur in these systems [1, 2]. In researching this problem, Zhao et al. [3] recognised that the concepts could be utilised to make new ultra-sensitive opto-acoustic devices.The thesis reports the development of acoustic resonators that would form the heart of a 3-mode opto-acoustic parametric amplifier (OAPA), and presents the design of such an amplifier and predictions of its performance.Finite element modelling (FEM) is used to choose an appropriate design for an acoustic resonator to be incorporated in a novel OAPA device. Acoustic resonator prototypes range from single-paddle designs [3] to 3-paddle designs inspired by Davis et al. [4]. Predictions of optical coating losses are presented as a function of size and location of coatings on the 3-paddle resonator design. Four models are identified as showing the most promise.Various resonator fabrication techniques and experimental setups to test resonators are discussed. Nodes and antinodes from the acoustic wave of a torsional mode (the mode of interest) in the frame are modelled with FEM to determine the optimal suspension locations of a 3-point contact setup.


Handbook of Spintronics

Handbook of Spintronics
Author: Yongbing Xu
Publisher: Springer
Total Pages: 0
Release: 2015-10-14
Genre: Science
ISBN: 9789400768918

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Over two volumes and 1500 pages, the Handbook of Spintronics will cover all aspects of spintronics science and technology, including fundamental physics, materials properties and processing, established and emerging device technology and applications. Comprising 60 chapters from a large international team of leading researchers across academia and industry, the Handbook provides readers with an up-to-date and comprehensive review of this dynamic field of research. The opening chapters focus on the fundamental physical principles of spintronics in metals and semiconductors, including an introduction to spin quantum computing. Materials systems are then considered, with sections on metallic thin films and multilayers, magnetic tunnelling structures, hybrids, magnetic semiconductors and molecular spintronic materials. A separate section reviews the various characterisation methods appropriate to spintronics materials, including STM, spin-polarised photoemission, x-ray diffraction techniques and spin-polarised SEM. The third part of the Handbook contains chapters on the state of the art in device technology and applications, including spin valves, GMR and MTJ devices, MRAM technology, spin transistors and spin logic devices, spin torque devices, spin pumping and spin dynamics and other topics such as spin caloritronics. Each chapter considers the challenges faced by researchers in that area and contains some indications of the direction that future work in the field is likely to take. This reference work will be an essential and long-standing resource for the spintronics community.


Phononic Crystals

Phononic Crystals
Author: Abdelkrim Khelif
Publisher: Springer
Total Pages: 247
Release: 2015-07-28
Genre: Technology & Engineering
ISBN: 1461493935

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This book provides an in-depth analysis as well as an overview of phononic crystals. This book discusses numerous techniques for the analysis of phononic crystals and covers, among other material, sonic and ultrasonic structures, hypersonic planar structures and their characterization, and novel applications of phononic crystals. This is an ideal book for those working with micro and nanotechnology, MEMS (microelectromechanical systems), and acoustic devices. This book also: Presents an introduction to the fundamentals and properties of phononic crystals Covers simulation techniques for the analysis of phononic crystals Discusses sonic and ultrasonic, hypersonic and planar, and three-dimensional phononic crystal structures Illustrates how phononic crystal structures are being deployed in communication systems and sensing systems


Index to IEEE Periodicals

Index to IEEE Periodicals
Author: Institute of Electrical and Electronics Engineers
Publisher:
Total Pages: 578
Release: 1971
Genre: Electrical engineering
ISBN:

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Proceedings of the IEEE, IEEE Transactions, IEEE Journals, IEEE Spectrum.