Conferences related to Berry phase

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2020 42nd Annual International Conference of the IEEE Engineering in Medicine & Biology Society (EMBC)

The conference program will consist of plenary lectures, symposia, workshops and invitedsessions of the latest significant findings and developments in all the major fields of biomedical engineering.Submitted papers will be peer reviewed. Accepted high quality papers will be presented in oral and postersessions, will appear in the Conference Proceedings and will be indexed in PubMed/MEDLINE


2020 IEEE 21st International Conference on Vacuum Electronics (IVEC)

Technical presentations will range from the fundamental physics of electron emission and modulated electron beams to the design and operation of devices at UHF to THz frequencies, theory and computational tool development, active and passive components, systems, and supporting technologies.System developers will find that IVEC provides a unique snapshot of the current state-of-the-art in vacuum electron devices. These devices continue to provide unmatched power and performance for advanced electromagnetic systems, particularly in the challenging frequency regimes of millimeter-wave and THz electronics.Plenary talks will provide insights into the history, the broad spectrum of fundamental physics, the scientific issues, and the technological applications driving the current directions in vacuum electronics research.


2020 IEEE International Conference on Consumer Electronics (ICCE)

The International Conference on Consumer Electronics (ICCE) is soliciting technical papersfor oral and poster presentation at ICCE 2018. ICCE has a strong conference history coupledwith a tradition of attracting leading authors and delegates from around the world.Papers reporting new developments in all areas of consumer electronics are invited. Topics around the major theme will be the content ofspecial sessions and tutorials.


2020 IEEE Photovoltaic Specialists Conference (PVSC)

Promote science and engineering of photovoltaic materials, devices, systems and applications


SoutheastCon 2020

SoutheastCon is the annual Region 3 conference that brings together engineering professionals, students, and volunteers for a weekend of technical presentations, meetings, student competitions, and volunteer education.

  • SoutheastCon 2021

    IEEE SoutheastCon is the annual IEEE Region 3 Student, Professional, and awards conference.

  • SoutheastCon 2019

    The annual IEEE SoutheastCon conferences promote all aspects of theories and applications of engineering disciplines. Sponsored by the IEEE Region-3 and IEEE Huntsville Section, this event will attract researchers, professionals, and students from the Southeastern region of the U.S. SoutheastCon 2019 will feature tutorial sessions, workshops, Technical Programs, and student Hardware, Software, Ethics, Paper, Web competitions.

  • SoutheastCon 2018

    SoutheastCon is a annual conference held in Region 3 and covers a Professional Track, Student Track and Regional Track.

  • SoutheastCon 2017

    Broad scope professional paper conference, region 3 annual meeting, region 3 annual student conference

  • SoutheastCon 2016

    Annual Region 3 Trifecta of Student competitions, Technical papers and volunteer training and administration.

  • SoutheastCon 2015

    Horizontal Technical Conference with all topics; students compete in multiple competions; Region 3 training meetings.

  • SOUTHEASTCON 2014

    Horizontal Technical Conference with all topics; students compete in multiple competions; Region 3 training meetings.

  • IEEE SOUTHEASTCON 2013

    Region 3 Meeting, Technical papers, student competitions.

  • SOUTHEASTCON 2012

    The annual IEEE SoutheastCon conferences promote all aspects of the theories and applications of the engineering disciplines. Sponsored by the IEEE Region 03, this event attracts researchers, professionals, and students from the Southeast region of the U.S and beyond. SoutheastCon 2012 will be held in Orlando, Florida.

  • SOUTHEASTCON 2011

    IEEE SoutheastCon2011 is the annual IEEE Region 3 technical, professional, and student conference, invites conference refereed and non-refereed technical paper presentations and tutorials that advance the work and careers of conference attendees in the areas of interest for the conference.

  • SOUTHEASTCON 2010

    SoutheastCon 2010 is the Region 3 event which includes a student conference, a technical conference, and the Region 3 business meeting.

  • SOUTHEASTCON 2009

    It is the annual IEEE Region 3 Technical, Professional, and Student Conference. As the premier conference for the IEEE Region 3, it brings together electrical, computer and other engineering and science professionals, faculty and students to share the latest information through technical sessions, tutorials and exhibits. The conference schedule includes: a technical program with seminars, tutorials, and workshops; exhibits; a student program with student competitions; and IEEE regional meetings.

  • SOUTHEASTCON 2008

    SoutheastCon is the Southeastern USA Region of the IEEE's premier conference. It contains three main sections: a technical program, student competitions and regional meetings. SouthEastCon features technical papers, tutorials and exhibits.

  • SOUTHEASTCON 2007

  • SOUTHEASTCON 2006

  • SOUTHEASTCON 2005

  • SOUTHEASTCON 2004

  • SOUTHEASTCON 2003

  • SOUTHEASTCON 2002

  • SOUTHEASTCON 2001

  • SOUTHEASTCON 2000

  • SOUTHEASTCON '99

  • SOUTHEASTCON '98

  • SOUTHEASTCON '97

  • SOUTHEASTCON '96


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Periodicals related to Berry phase

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Antennas and Propagation, IEEE Transactions on

Experimental and theoretical advances in antennas including design and development, and in the propagation of electromagnetic waves including scattering, diffraction and interaction with continuous media; and applications pertinent to antennas and propagation, such as remote sensing, applied optics, and millimeter and submillimeter wave techniques.


Device and Materials Reliability, IEEE Transactions on

Provides leading edge information that is critical to the creation of reliable electronic devices and materials, and a focus for interdisciplinary communication in the state of the art of reliability of electronic devices, and the materials used in their manufacture. It focuses on the reliability of electronic, optical, and magnetic devices, and microsystems; the materials and processes used in the ...


Electron Devices, IEEE Transactions on

Publishes original and significant contributions relating to the theory, design, performance and reliability of electron devices, including optoelectronics devices, nanoscale devices, solid-state devices, integrated electronic devices, energy sources, power devices, displays, sensors, electro-mechanical devices, quantum devices and electron tubes.


Instrumentation and Measurement, IEEE Transactions on

Measurements and instrumentation utilizing electrical and electronic techniques.


Lightwave Technology, Journal of

All aspects of optical guided-wave science, technology, and engineering in the areas of fiber and cable technologies; active and passive guided-wave componentry (light sources, detectors, repeaters, switches, fiber sensors, etc.); integrated optics and optoelectronics; systems and subsystems; new applications; and unique field trials.


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Most published Xplore authors for Berry phase

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Xplore Articles related to Berry phase

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Dependence of berry's phase on the sign of the g-factor observed by the atom interferometry

International Quantum Electronics Conference, 2005., 2005

None


Measurement of Berry's Phase using a Time-Domain Atom Interferometer

2004 Conference on Precision Electromagnetic Measurements, 2004

We propose a novel method of the measurement of Berry's phase free from the dynamical phase shift for partial cycles of rotating magnetic field in parameter space by using a time-domain atom interferometer. The experimental results are presented and discussed


Experiments on topological nodal chains

2018 Conference on Lasers and Electro-Optics (CLEO), 2018

We theoretically predicted and experimentally verified mirror-protected nodal chains in a metallic-mesh photonic crystal at microwave frequencies. The bulk states were detected through angle-resolved transmission and drumhead surface states were mapped out by field scans.


Berry's phase and orbital angular momentum

2017 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC), 2017

In 1984 Berry showed that a quantum system evolving in a cyclic and adiabatic way acquires in addition to the dynamic phase also a phase which of geometric nature, depending on the path on the parameter space [1]. This geometric phase, also named Berry's phase, can be generalized to non-adiabatic situations [2] and presents some classical analogues, as in the ...


Photon Spin Hall Effect based Ultra-thin Transmissive Metasurface for Efficient Generation of OAM Waves

IEEE Transactions on Antennas and Propagation, None

Metasurfaces deployed for generating electromagnetic waves that carry orbital angular momentum (OAM) in the transmission mode are generally inefficient in operation. In this paper, we present a method for the design, fabrication, and characterization of ultra-thin metasurface which could be used for generating OAM waves at microwave frequencies with high efficiency. We achieve this objective by proposing a novel bi-layer ...


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Educational Resources on Berry phase

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IEEE.tv Videos

Keynote Orna Berry - ETAP Tel Aviv 2015
A 28GHz SiGe BiCMOS Phase Invariant VGA: RFIC Industry Showcase
IMS 2011 Microapps - Ultra Low Phase Noise Measurement Technique Using Innovative Optical Delay Lines
IMS 2012 Microapps - Phase Noise Choices in Signal Generation: Understanding Needs and Tradeoffs Riadh Said, Agilent
Micro-Apps 2013: Determining Circuit Material Dielectric Constant from Phase Measurements
Phase Retrieval with Application to Optical Imaging
A 40GHz PLL with -92.5dBc/Hz In-Band Phase Noise and 104fs-RMS-Jitter: RFIC Interactive Forum 2017
Synchronised 4-Phase Resonant Power Clock Supply for Energy Efficient Adiabatic Logic: IEEE Rebooting Computing 2017
An Analysis of Phase Noise Requirements for Ultra-Low-Power FSK Radios: RFIC Interactive Forum 2017
A Harmonic-Selective Wireless Full-Band-Capture Receiver with Digital Harmonic Rejection Calibration: RFIC INteractive Forum 2017
MicroApps: Phase Noise, Allan Variance, and Frequency Reference (Agilent Technologies)
Conformity Assessment: The Perspective of Product Designers - Gordon Gillerman, Director, Standards Coordination Office, NIST
An IEEE IPC Special Session with Rafael Rios-Mueller of Nokia Bell Labs
A Low Power High Performance PLL with Temperature Compensated VCO in 65nm CMOS: RFIC Interactive Forum
An IEEE IPC Special Session with Kasia Balakier of UCL
A Fully Integrated 75-83GHz FMCW Synthesizer for Automotive Radar Applications with -97dBc/Hz Phase Noise at 1MHz Offset and 100GHz/mSec Maximal Chirp Rate: RFIC Industry Showcase 2017
IMS 2014: Out-of-Plane and Inline RF Switches based on Ge2Sb2Te5 Phase-Change Material
IEEE Magnetics Distinguished Lecture - Mitsuteru Inoue
A Ka-Band 4-Ch Bi-Directional CMOS T/R Chipset for 5G Beamforming System: RFIC Interactive Forum 2017
A 30-MHz-to-3-GHz CMOS Array Receiver with Frequency and Spatial Interference Filtering for Adaptive Antenna Systems: RFIC Industry Showcase

IEEE-USA E-Books

  • Dependence of berry's phase on the sign of the g-factor observed by the atom interferometry

    None

  • Measurement of Berry's Phase using a Time-Domain Atom Interferometer

    We propose a novel method of the measurement of Berry's phase free from the dynamical phase shift for partial cycles of rotating magnetic field in parameter space by using a time-domain atom interferometer. The experimental results are presented and discussed

  • Experiments on topological nodal chains

    We theoretically predicted and experimentally verified mirror-protected nodal chains in a metallic-mesh photonic crystal at microwave frequencies. The bulk states were detected through angle-resolved transmission and drumhead surface states were mapped out by field scans.

  • Berry's phase and orbital angular momentum

    In 1984 Berry showed that a quantum system evolving in a cyclic and adiabatic way acquires in addition to the dynamic phase also a phase which of geometric nature, depending on the path on the parameter space [1]. This geometric phase, also named Berry's phase, can be generalized to non-adiabatic situations [2] and presents some classical analogues, as in the case of the motion of a Foucault pendulum [3].

  • Photon Spin Hall Effect based Ultra-thin Transmissive Metasurface for Efficient Generation of OAM Waves

    Metasurfaces deployed for generating electromagnetic waves that carry orbital angular momentum (OAM) in the transmission mode are generally inefficient in operation. In this paper, we present a method for the design, fabrication, and characterization of ultra-thin metasurface which could be used for generating OAM waves at microwave frequencies with high efficiency. We achieve this objective by proposing a novel bi-layer subwavelength scatterer having π retardation phase between two orthogonal polarizations of an incident circularly polarized (CP) wave that also have high amplitudes. When analyzed our setup using Jones matrices, we find that the scatterer inverts the spin direction of the incident CP wave with high efficiency. Furthermore, the setup provides full phase control with the spatial rotation of the scatterer as per Panchratnum Berry Phase Mechanism. To further illustrate the utility of the proposal, a metasurface was designed based on the proposed scatterer and the generation of OAM waves is validated through both simulations and experimental measurements. To further clarify the points, a rigorous analysis for the transmission and conversion efficiencies is presented.

  • Berry phase magnification and other polarisation effects in nonlinear microcoil resonators

    In a birefringent optical microcoil resonator novel effects occur that cannot be seen in normal optical microcoil resonators. In this paper we discuss some of them such as Berry phase magnification as well as polarisation switching in the nonlinear regime.

  • Polarimetry of THz High-Order Sideband Generation: Towards a Measurement of Berry Curvature

    Dynamical birefringence associated with high-order sideband generation is a consequence of Berry curvature of the driven material. Careful polarimetry opens the way to measuring Berry curvature in solids.

  • Berry's phase magnification in microcoil resonators

    Research towards understanding the topological Berry's phase (ΦB) has been driven by its manifestation in various interesting quantum mechanical and optical phenomena. In helical fibre structures, the generation of ΦBis well documented, and recently the amplification of Berry's phase using a ring resonator was observed. In this work, we show it is theoretically possible to generate a large Berry's phase using compact optical microcoil resonators (OMRs) formed by tightly winding a microfibre around a rod such that light can evanescently couple between neighbouring turns. In particular, the effect of ΦBon the OMR transmission is analysed, in order to understand the associated polarisation effects which are potentially important for developing OMR applications.

  • Experiment realization of synthetic Weyl points in optical regime

    We demonstrate that generalized Weyl points can exist in a parameter space and we report the first observation of such nodal points in one-dimensional photonic crystals in the optical range. The reflection phase inside the band gap of a truncated photonic crystal exhibits vortexes in the parameter space where the Weyl points are defined and they share the same topological charges as the Weyl points.

  • Topological properties of the illuminated arrays of mesoscopic rings

    Quantum spin Hall phase is shown to emerge in a two-dimensional arrays of polariton rings where time-reversal symmetry is broken due to the application of out-of-plane magnetic field. Later, a zigzag array of polariton rings are studied and topologically protected edge-states are demonstrated where each of the edge states is doubly degenerate, and the wavefunctions of the two degenerate states are localized at opposite ends of chain — reminiscent of Su- Schrieffer-Heeger model.



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