Hi Tonza
Here is some basic research I have collated:People
Dr Martin Fuechsle
Dr Mohammad Choucair
Patents
WO2020163921 - GRAPHENE COMPLEXES AND COMPOSITIONS THEREOFhttps://patentscope.wipo.int/search/en/detail.jsf?docId=WO2020163921
Abstract
Disclosed herein are complexes comprising graphene compositions thereof. Also disclosed herein are methods of synthesising said complexes and compositions, and the use of said complexes and compositions in, for instance, biomolecular sensing.
WO2017091870 - A QUANTUM ELECTRONIC DEVICE
https://patentscope.wipo.int/search/en/detail.jsf?docId=WO2017091870
Abstract
This disclosure relates to quantum electronic devices for storing qubits. In particular, this disclosure relates to a quantum electronic device comprising a carbon nanosphere adapted to store a qubit represented by an electron spin and a control and readout device to set the qubit and read the qubit stored on the carbon nanosphere. Qubits stored on carbon nanospheres have a long electron spin lifetime at room temperature. This disclosure further relates to a method for quantum computing. The method comprises storing a qubit represented by an electron spin on a carbon nanosphere, performing a quantum operation on the qubit to generate a resulting qubit and reading the resulting qubit from the nanosphere. There is further provided a spintronic device comprising multiple carbon nanospheres adapted to provide a qubit represented by an electron spin in that carbon nanosphere and a control device to facilitate interaction between the qubits to perform a quantum operation.
WO2009029984 - GRAPHENE
https://patentscope.wipo.int/search/en/detail.jsf?docId=WO2009029984Abstract
Graphene having a plurality of cavities therein is described. There is also described a process for producing graphene wherein a metal, for example an alkali metal, is reacted with an alcohol to produce a solvothermal product comprising a metal alkoxide. The solvothermal product is then pyrolysed to produce the graphene.
Research
Room temperature manipulation of long lifetime spins in metallic-like carbon nanospheres
https://www.nature.com/articles/ncomms12232
Abstract
The time-window for processing electron spin information (spintronics) in solid-state quantum electronic devices is determined by the spin–lattice and spin–spin relaxation times of electrons. Minimizing the effects of spin–orbit coupling and the local magnetic contributions of neighbouring atoms on spin–lattice and spin–spin relaxation times at room temperature remain substantial challenges to practical spintronics. Here we report conduction electron spin–lattice and spin–spin relaxation times of 175 ns at 300 K in 37±7 nm carbon spheres, which is remarkably long for any conducting solid-state material of comparable size. Following the observation of spin polarization by electron spin resonance, we control the quantum state of the electron spin by applying short bursts of an oscillating magnetic field and observe coherent oscillations of the spin state. These results demonstrate the feasibility of operating electron spins in conducting carbon nanospheres as quantum bits at room temperature.Electron Spin Dynamics of Two‐Dimensional Layered Materials
https://onlinelibrary.wiley.com/doi/abs/10.1002/adfm.201604040
Abstract
The growing library of two‐dimensional layered materials is providing researchers with a wealth of opportunity to explore and tune physical phenomena at the nanoscale. Here, we review the experimental and theoretical state‐of‐art concerning the electron spin dynamics in graphene, silicene, phosphorene, transition metal dichalcogenides, covalent heterostructures of organic molecules and topological materials. The spin transport, chemical and defect induced magnetic moments, and the effect of spin‐orbit coupling and spin relaxation, are also discussed in relation to the field of spintronics.
News Articles
date
headline
url
1 1/17/2019
Archer hired the guy who invented the ‘single-atom’ transistor to lead its quantum tech team
2 8/25/2019
QUBIT COMPONENT POSITIONED WITH NANOSCALE PRECISION
https://www.quantaneo.com/Qubit-component-positioned-with-nanoscale-precision_a165.html
3 8/26/2019
Australia's Archer details first stage of room temp quantum chip success
4 8/29/2019
Quantum computing exits the lab
https://ia.acs.org.au/article/2019/quantum-computing-exits-the-lab.html
5 9/1/2019
ARCHER CEO, DR MOHAMMAD CHOUCAIR, WILL ATTEND QUANTUM.TECH CONFERENCE IN BOSTON
6 9/16/2019
TWO LOCAL COMPANIES CHASE QUANTUM COMPUTING SUCCESS
https://www.aumanufacturing.com.au/two-local-companies-chase-quantum-computing-success
7 10/21/2019
Archer Exploration attempts to build room-temp quantum computer
8 10/22/2019
First look at a quantum computer chip
https://ia.acs.org.au/article/2019/first-look-at-a-quantum-computer-chip.html
9 11/29/2019
ARCHER TO CHAIR AT LONDON QUANTUM.TECH CONFERENCE
https://www.quantaneo.com/Archer-to-chair-at-London-Quantum-Tech-conference_a338.html
10 1/28/2020
Archer enters second stage of quantum chip development
11 3/11/2020
ARCHER PROGRESS TOWARDS SINGLE QUBIT QUANTUM MEASUREMENTS
https://www.quantaneo.com/Archer-progress-towards-single-qubit-quantum-measurements_a444.html
12 5/5/2020
Archer to work alongside IBM in progressing quantum computing
https://www.zdnet.com/article/archer-to-work-alongside-ibm-in-progressing-quantum-computing/
13 5/5/2020
SA's Archer signs quantum chip deal with IBM
https://indaily.com.au/news/business/2020/05/05/sas-archer-signs-quantum-chip-deal-with-ibm/
14 5/5/2020
IBM deal to fast track quantum chip development
15 5/6/2020
ARCHER IN QUANTUM DEAL WITH IBM
https://www.aumanufacturing.com.au/archer-in-quantum-deal-with-ibm
16 6/11/2020
Archer looks to commercialisation future with graphene-based biosensor tech
17 6/15/2020
EARLY-STAGE VALIDATION OF QUANTUM COMPUTING CHIP VIABILITY HIGHLIGHTS
18 8/11/2020
QUANTUM DEVICES SUCCESSFULLY BUILT FOR QUBIT CONTROL
https://www.quantaneo.com/Quantum-devices-successfully-built-for-qubit-control_a567.html
Related Industry News
Researchers see path to quantum computing at room temperaturehttps://phys.org/news/2020-05-path-quantum-room-temperature.html
"Based on the progress made over the last decade, we expect that it will take about ten years for the necessary improvements to be realized,"
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