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8846 result(s) found
Development of mid-infrared single photon detector at room temperature

The project aims to develop mid-infrared single photon detector at room temperature. Single photon detectors are technologically important for a variety of applications, such as, biomedical imaging, laser range finding, space applications, and quantu

Section: Academic Innovations (Innovations)
High precision magnetic field sensors based on spin correlation spectroscopy using thermal and cold atoms

The project aims to develop ‘High precision magnetic field sensors based on spin correlation spectroscopy using thermal and cold atoms’. Apart from interest in fundamental sciences these results have applications ranging from medical imaging to m

Section: Academic Innovations (Innovations)
Tunable Charges Spin Interconversion at Quantum Interface.0

The proposed research has tremendous potential for the realization of large spin-dependent splitting at the new quantum heterointerface of YIG/2D materials and can be implemented to develop low-power spintronics devices in the future. This will help

Section: Academic Innovations (Innovations)
Frequency double diode laser system at 493 nm for barium ion spectroscopy

The project will find Applications in quantum technologies related to trapped ions, cold atoms system development, precision laser spectroscopy, quantum metrology, squeezed states, astronomy, Microscopy.

Section: Academic Innovations (Innovations)
Developing high performance and cost e ectivewavemeters for high resolution atomic and molecular spectroscopy applications

The project aims to develop high performance, cost-effective wavemeters for high resolution atomic and molecular spectroscopy applications. Wavemeters find applications in a wide range of areas such as high-resolution atomic and molecular spectroscop

Section: Academic Innovations (Innovations)
Topological Quantum Materials for Thermoelectric Energy Conversion

The project will have applications in energy management and reutilization of waste heat to electricity. In addition, this project will have the potential to attract new industry partners, particularly in semiconductor and power conversion/generation

Section: Academic Innovations (Innovations)
High-temperature c-axis Josephson junction-based SQUID

The project aims to develop High-temperature c-axis Josephson junction-based SQUID. This device is expected to provide a platform for ultra-sensitive field Magnetic sensors and Quantum parametric amplifiers.

Section: Academic Innovations (Innovations)
Growth and Characterization of SiGe Quantum Heterostructure Devices by Molecular Beam Epitaxy for Quantum Computing Applications

The project is expected to be a crucial ingredient in the development of Qubit structures based on Silicon Quantum dots.

Section: Academic Innovations (Innovations)
Development of tunable lasers and portable atomic platforms for Quantum information processing and sensors.

Trapped atoms in 1D, 2D, or 3D lattices can be used as qubits since they possess all the required features, such as states with long coherence time and the possibility of initialization and readout. Further, this is a very attractive platform for qua

Section: Academic Innovations (Innovations)
Josephson junction based parametric amplifiers for Superconducting qubit based Quantum Processor

Josephson Parametric Amplifiers (JPA) are some of the lowest noise microwave frequency amplifiers which are crucial for any superconducting quantum processor as they help in achieving high fidelity measurements in a short amount of time. This makes t

Section: Academic Innovations (Innovations)
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