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8846 result(s) found
Quantum control of driven dissipative systems and realizations of efficient quantum heat engine

This project proposes a theoretical/computational effort aimed at developing and implementing tools as well as fundamental principles to help understand quantum thermal machines. (Theory Project)

Section: Academic Innovations (Innovations)
Magnetism and emerging quantum phases in two-dimensional materials

High-density and high-speed information processing will become achievable with substantially reduced energy consumption, consequently reducing costs and enhancing productivity.. (Theory Project)

Section: Academic Innovations (Innovations)
Trapped ion-crystal with Rydberg excitations

This project explores various theoretical aspects, particularly the microscopic properties of different dipolar systems and the associated novel phenomena/applications within the current experimental feasibilities(Theory Project)

Section: Academic Innovations (Innovations)
Developing e􀇤cient algorithms for strongly interacting quantum many body systems

This project aims to investigate the use of techniques such as the tensor network/ matrix product states formalism, and DMRG algorithm to pursue the simulation of (primarily one dimensional) strongly interacting open quantum systems that are strongly

Section: Academic Innovations (Innovations)
1) Development of HTS based DC Squid Sensors 2)Development of Magnon Based Spintronic Devices

This proposal aims to develop high Tc superconductor-based (HTS) SQUID sensors. Though this is already a very mature (and commercialized) area, developing these devices in India is very important. The proposal also aims to pursue magnonic-spintronic

Section: Academic Innovations (Innovations)
Crystal growth, structural and physical characterization of quantum materials

Crystal growth and design of new quantum materials will give country a head start in several emerging quantum technologies where new materials with specific properties are required and cannot be easily/economically procured from other countries. Crys

Section: Academic Innovations (Innovations)
Quantum chaos border for arbitrary arrays of transmon-based quantum computers

Coupled transmonbased quantum computers have emerged as a leading technology for quantum hardware. The topology and connectivity matrix of the transmons determine if it can effectively function as a computing device. This project will determine the r

Section: Academic Innovations (Innovations)
Large Quantum Registers with Nuclear Spin-Systems

Quantum simulations can efficiently solve scientific models, optimization problems, and can come up with low-cost high-gain solutions.NMR quantum register is also ideal for educational purposes

Section: Academic Innovations (Innovations)
1.Development of 20 qubit ion trap quantum processor 2.Development of a Transportable Atomic Gravimeter

The projects are engaged in advancing several cutting-edge technologies, including the development of a quantum gravimeter, optical atomic clock, and both ion trap and neutral atom-based quantum computers. These innovations all rely on the manipulati

Section: Academic Innovations (Innovations)
Electrocaloric coolers at cryogenic temperatures

The project aims to develop Electrocaloric coolers at cryogenic temperatures. Such devices are expected to offer silent solid state alternatives to conventional cooling technologies.

Section: Academic Innovations (Innovations)
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