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Diagram 254 – Google Notes Gallium Arsenide Spin Charge Converters 2016 DATA for UFO Crystalline Y STructure Engine Design

February 9, 2016
Diagram 34 WOW! SETI SIGNAL Bouncing Particles magnetized in HEF ring Dot Quantum Dots Flux Positive negative particles

Diagram 34 WOW! SETI SIGNAL Bouncing Particles magnetized in HEF ring Dot Quantum Dots Flux Positive negative particles

 

Diagram 34 WOW! SETI SIGNAL Bouncing Particles magnetized in HEF ring Dot Quantum Dots Flux Positive negative particles

Diagram 33 WOW! SETI Signal lasers create Electron rays quantum dots in vacuum with NODES Mirrors

Diagram 33 WOW! SETI Signal lasers create Electron rays quantum dots in vacuum with NODES Mirrors

Diagram 33 WOW! SETI Signal lasers create Electron rays quantum dots in vacuum with NODES Mirrors

Diagram 33, 32, 31 Atomic Chain of reaction with particles, HIGGS EF, Lattice, lasers Quantum Dots Flux UFO Engine design

Diagram 33, 32, 31 Atomic Chain of reaction with particles, HIGGS EF, Lattice, lasers Quantum Dots Flux UFO Engine design

Diagram 33, 32, 31 Atomic Chain of reaction with particles, HIGGS EF, Lattice, lasers Quantum Dots Flux UFO Engine design

Diagram 24 WOW! SETI CORE UFO Engine communication laser beams crystalline lattice quantum dots water molecules

Diagram 24 WOW! SETI CORE UFO Engine communication laser beams crystalline lattice quantum dots water molecules

Diagram 24 WOW! SETI CORE UFO Engine communication laser beams crystalline lattice quantum dots water molecules

the idea girl says

the Keyword GAAS came up in Diagram 254, and it’s been 4 years since I looked at your research.  I thought at first it was for FUEL LOL Now I find out it’s a type of crystal semi conductor material, which is in the UFO Engine Design – the Y crystalline super lattice Structure

see Diagram 254 and notes  and Diagrams here:

https://alienspacesciencenews.wordpress.com/2016/02/09/diagram-254-wow-signal-electron-lasers-holes-gold-plasmas-frequencies-hyperbole-network-ufo-communication-particles/

 

the idea girl says

my thoughts 9 FEbruary 2016.

here’s the Google results (I have to update it, because it shows where it’s going in the UFO engine’s particle Vacuum accelerator so we need to ADD this data and these “inventions” to it.

Diagram 254 – Google Notes Gallium Arsenide Spin Charge Converters 2016 DATA for UFO Crystalline Y STructure Engine Design

Search Results.

quotes from blog abstract test results

Magneto-optical spectroscopy of single charge-tunable InAs/GaAs quantum dots emitting at telecom wavelengths

 

Luca Sapienza,1, ∗ Rima Al-Khuzheyri,2, † Adetunmise Dada,2 Andrew Griffiths,3 Edmund Clarke,3 and Brian D. Gerardot2 1Department of Physics and Astronomy, University of Southampton, Southampton SO17 1BJ, United Kingdom 2 Institute of Photonics and Quantum Sciences, SUPA, Heriot-Watt University, Edinburgh, United Kingdom 3EPSRC National Centre for III-V Technologies, University of Sheffield, United Kingdom (Dated: January 21, 2016)

Abstract

We report on the optical properties of single InAs/GaAs quantum dots emitting near the telecommunication O-band, probed via Coulomb blockade and non-resonant photoluminescence spectroscopy, in the presence of external electric and magnetic fields. We extract the physical properties of the electron and hole wavefunctions, including the confinement energies, interaction energies, wavefunction lengths, and g-factors. For excitons, we measure the permanent dipole moment, polarizability, diamagnetic coefficient, and Zeeman splitting.

The carriers are determined to be in the strong confinement regime. Large range electric field tunability, up to 7 meV, is demonstrated for excitons. We observe a large reduction, up to one order of magnitude, in the diamagnetic coefficient when rotating the magnetic field from Faraday to Voigt geometry due to the unique dot morphology.

The complete spectroscopic characterization of the fundamental properties of longwavelength dot-in-a-well structures provides insight for the applicability of quantum technologies based on quantum dots emitting at telecom wavelengths

 

http://arxiv.org/pdf/1601.05365.pdf

 

the idea girl says

my thoughts

Quantum DOTS!  They are at the BASE of the UFO crystalline Engine and I didn’t update that research because it’s on my “to do formula list.”

So interesting that I did this data search 4 years ago and they are just discovering it works, now, so TEST results are SUCCESSFUL!!!! happy dance !!! 🙂 it worked!

 

Quantum Dots (keyword in alien radio signal wow research formula’s 6EQUJ5 is with GAAS as a type of laser transmission signal for communications…

Now I know why it keeps telling me in each part of the formula to do a cross reference for Lines 1 to 27, it’s not just for the WOW! alien radio signal data research videos for 6EQUJ5 its also for our scientists discoveries.  Congrats to you for trying out these “alien technologies” and finding out they work. 🙂 good job!

** happy dance!!! **

 

quote blog

Optimal geometry of lateral GaAs and Si/SiGe quantum dots for electrical control of spin qubits Ognjen Malkoc,1,2 Peter Stano,2,3 Daniel Loss2,4 1Department of Physics, Lund University, Box 118, SE-221 00 Lund, Sweden 2RIKEN Center for Emergent Matter Science, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan 3 Institute of Physics, Slovak Academy of Sciences, 845 11 Bratislava, Slovakia 4Department of Physics, University of Basel, Klingelbergstrasse 82, CH-4056 Basel, Switzerland

 

We investigate the effects of the orientation of the magnetic field and the orientation of a quantum dot, with respect to crystallographic coordinates, on the quality of an electrically controlled qubit realized in a gated semiconductor quantum dot. We find that, due to the anisotropy of the spin-orbit interactions, varying the two orientations it is possible to tune the qubit in the sense of optimizing the ratio of its couplings to phonons and to a control electric field.

We find conditions under which such optimal setup can be reached by solely reorienting the magnetic field, and when a specific positioning of the dot is required. We also find that the knowledge of the relative sign of the spinorbit interactions strengths allows to choose a robust optimal dot geometry, with the dot main axis along [110], or [110], where the qubit can be always optimized by reorienting the magnetic field.

 

source of quote

http://arxiv.org/pdf/1601.05881.pdf

Figure 1. Principle of the experimental investigation of charge and spin transport.

Figure 1. Principle of the experimental investigation of charge and spin transport.

quote blog

Optoelectronics & Communications

Imaging charge and spin transport at high density in semiconductors

Imaging luminescence polarization under excitation by a tightly focused laser reveals novel phenomena related to spin transport in semiconductors.
29 January 2016, SPIE Newsroom. DOI: 10.1117/2.1201512.006270
quote blog
Fano Resonance in an Electrically Driven Plasmonic Device

Fano Resonance in an Electrically Driven Plasmonic Device

Fano Resonance in an Electrically Driven Plasmonic Device

Department of Condensed Matter Physics, Weizmann Institute of Science, Rehovot 76100, Israel
Nano Lett., 2016, 16 (1), pp 748–752
DOI: 10.1021/acs.nanolett.5b04622
Publication Date (Web): December 30, 2015
Copyright © 2015 American Chemical Society

We present an electrically driven plasmonic device consisting of a gold nanoparticle trapped in a gap between two electrodes. The tunneling current in the device generates plasmons, which decay radiatively. The emitted spectrum extends up to an energy that depends on the applied voltage.

Characterization of the electrical conductance at low temperatures allows us to extract the voltage drop on each tunnel barrier and the corresponding emitted spectrum. In several devices we find a pronounced sharp asymmetrical dip in the spectrum, which we identify as a Fano resonance.

Finite-difference time-domain calculations reveal that this resonance is due to interference between the nanoparticle and electrodes dipolar fields and can be conveniently controlled by the structural parameters.

source
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