会议信息
ICQNM 2022: International Conference on Quantum, Nano and Micro Technologies
https://www.iaria.org/conferences2022/ICQNM22.html
截稿日期:
2022-06-12
通知日期:
2022-07-10
会议日期:
2022-10-16
会议地点:
Lisbon, Portugal
届数:
16
浏览: 13034   关注: 0   参加: 0

征稿
Quantum technologies and nano technologies have a great potential to transform communications telecommunications infrastructure and communication protocols, and computers and networking devices. Nanotechnologies and micro-technologies already made their mark on smart materials, nano-medicine, nano-devices, molecular manufacturing, biotechnology, metrology, airspace.

The advancements in material science and computer science have allowed the building, launching and deploying of space exploration systems that continually do more and more as they become smaller and lighter. As an example, carbon nano-tubes have been created that are 250 times stronger than steel, 10 times lighter, and transparent. Similar advances are occurring in glass, plastics and concrete. Spacecraft are being launched, with hulls that are composed of carbon fibers, a light weight high strength material.

Swarms is another concept of nano-robotics; swarms act in unison like bees. They theoretically will act as a flexible cloth like material, as strong as diamond. Interplanetary exploration can be foreseen as being carried on by nano-robots as well.

Electronic devices, medicine, environment, metrology, aerospace programs, clothes and materials, telecommunications, cryptography, semiconductors, manufacturing, and other domains are impacted by the progress on the areas mentioned above. Particularly, micro imaging, nano-medicine: (drug delivery; nano-particles i.e. viruses; proteins.), bio-nanostructures: (nano-tubes, nano-particles), microsystems, micro fluidics: (including nano-fluidics, modeling; fabrication and application), micro instrumentation / implantable microdevices (miniaturized bio-electronic systems etc.) and micro sensors benefits from the progress on quantum, nano and micro technologies.

The International Conference on Quantum-, Nano- and Micro-technologies (ICQNM 2022) continues a series of events covering particularly promising theories and technologies. The conference covers fundamentals on designing, implementing, testing, validating and maintaining various kinds of materials, systems, techniques and mechanisms related to quantum-, nano- and micro-technologies.

Developing nanoscale-manufactured robots presents fabrication and control challenges. The evolution of mechatronics system and robotic system requires advanced functions for control. Special methods and technologies have been developed to design, analyze, build, controls, and apply micro/nano-robotic systems for biotechnology, medical, information technology, materials, etc. A particular application of nano-robots would be in carrying out projects in hostile environments, utilizing local materials and local energy. Ultra-miniature robotic systems and nano-mechanical devices will be the biomolecular electro-mechanical hardware of future manufacturing and biomedical industry.

Nowadays, there are tremendous attempts to develop new bio-molecular machines, components that can be assembled in nano-devices. Bio-robotics entities are able to manipulate the nano-world components, convey information from the nano/nano to the nano/macro world and navigate at the nano-environment level. Additionally, they are able to self replicate, leading to the bio-robot factory. Protein-based nano-motors and nano-robots, as well as biomolecular components interfaces.

Quantum cryptography uses the uncertainty principle of quantum physics to provide a safe but public means for transmitting vital, secret information. A quantum public key distribution system depends on the uncertainty principle to ensure secrecy. Special protocols correlations and composability algorithms ensure similar functionality as in non-quantum systems. The security related tracks cover a series of events focusing on quantum security aspects. On the quantum protocol side, automated proofs of security and probabilistic model-checking methods have been suggested. Research teams focus on quantum key distribution and aspects related to key composability and correlations. Limitations are mainly related to physical devices and polarization control.

Classical methods for reasoning on security, discovering security vulnerabilities and building secure quantum cryptographic systems must be revisited.

We solicit both academic, research, and industrial contributions. We welcome technical papers presenting research and practical results, position papers addressing the pros and cons of specific proposals, such as those being discussed in the standard fora or in industry consortia, survey papers addressing the key problems and solutions on any of the above topics short papers on work in progress, and panel proposals.

Industrial presentations are not subject to the format and content constraints of regular submissions. We expect short and long presentations that express industrial position and status.

Tutorials on specific related topics and panels on challenging areas are encouraged.

The topics suggested by the conference can be discussed in term of concepts, state of the art, research, standards, implementations, running experiments, applications, and industrial case studies. Authors are invited to submit complete unpublished papers, which are not under review in any other conference or journal in the following, but not limited to, topic areas.

All topics and submission formats are open to both research and industry contributions.

ICQNM 2022 conference tracks:

QNM Communications and Computation

Molecular; bacterial; quantum; nano-wireless; terahertz; neuronal; nano-scale; ribo-computing; computational nano-robotics

QNM Networks

Nano-networks; Internet of nano-Things (IonT); Analog synthetic gene networks; Bio-nanostructures (nano-tubes, nano-particles)

QNM Materials

Graphene and nanotubes; Biosensing (nano)materials and interfaces; Interconnect materials, technologies, and applications; Materials and technologies for package-level thermal management; Nano-films; Porous and pin-fin surfaces; Electrospun polymer fibers; Polymer/Clay nano-composites; Optofluidics; Silicon nano-wires; Wide band-gap dielectrics; Nano-particles i.e., viruses; proteins; Polymeric composites; Ferromagnet thin film heterostructures; Superfluid film; Iron-based superconductors; Carbon nano-tubes and biological objects (DNA, RNA, cell, tissue, etc.); Biomolecular components interfaces (DNA joints and carbon-nanotube rigid links); Self-healing materials; Superconductivity; Superconductors; Supercurrents

QNM Sensing

On-chip trace-gas spectroscopy; Nano/Biosensing; Micro-fabricated sensors; 3D-printed sensors; 3-D micro-structuring; Nano/micro scale thermal radiation; Nano/micro scale thermal radiation;

QNM Energy

Energy detection in THz nano-networks; Pyroelectric energy harvesting; Fuel cells and energy storage devices; Energy saving and optimal consumption

QNM Security/Safety

Quantum security; Quantum cryptography; Quantum key distribution, Near-field security; Near-field safety; Defense and homeland security; Security at QNM level; Safety at QNM level

QNM Robotics

Microrobotics, Microscale-control; Micro-manipulation; Autonomous and teleoperated nano-manufacturing systems; Biologically inspired miniature space robots and micro-/nano-systems; Nano-particles and nano-wires; Micro-/nano-electromechanical systems; Bio-nano robots; Nano-robots and nano-assembly; Nano-robots control design; Computational nano-robotics; Nano-robotics simulation; Nano-robotics communication; Evolutionary nano-robots; Cellular robotics and micro/nano robotics systems; Viral proteins motors; Protein-based nano-motors and nano-robots

QNM Fluidics

Discrete microfluidics, Hydrodynamic microfluidity, Nano fluidics and robotics; Micro-fluidics (including nano-fluidics, modeling; fabrication and application); Fluid mechanics and modeling; Microfluidics (DNA, lab-on-a-chip, lithography, etc.); Fluidics design and assembly; Hybrid devices, microfluidic packaging; Digital microfluidics; Capillary electrophoresis; Microfluidic fuel cells; Cell soring and handling; Magnetic nanofluids; Transport in nanofluids

QNM Systems, Devices and Properties

Performance of nano/micro systems; Reliability of nano devices, circuits and systems; Modeling and simulation of nano devices; Design methodologies and tools for nano circuits and systems; Testing of nano circuits and systems; Nano tools; Integrated nano systems, Micro propulsion systems; Factory and micro assembly; Quantum memory; Nanophotonic, Smart antennas, Micro/nano resonators; Bio-molecular machines; actuators; transducers; Micro-instruments; Ribo-computing devices; Mechanical and thermal properties; Specifics on evaporation and condensation; Crystallization; Elasticity and performance; Adhesion measurements; Specific heat oscillations; Performance models of nano- and bio-robots; Limitations of nano-robot colonies

QNM Applications

Biomedical applications, nano/micro systems, Quantum simulation tools, Quantum teleportation, Nano-lithography and manufacturing; Nano-tribometry; Scanning probe microscopy; Near-field microscopy; System integration - macro/micro/nano systems; 3D micro-structuring; Nano-medicine (i.e., drug delivery); Micro instrumentation / implantable micro-devices (miniaturized bio-electronic systems etc.); Micro imaging; Nano measurements (optical interference); Nano biotechnology; Aerospace and automotive; Molecular manufacturing; Quantum Nano metrology; Aerospace applications; Data-storage techniques; Defense applications; Nano-robots in nano-medicine; Surgical micro-robots inside the human body; Nano-robotics and biomedical applications; Medical nano-robots feasibility
最后更新 Dou Sun 在 2022-06-04
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