IL264115A - Quantum rotor created by trapping single atoms in an optical matrix, and use thereof for measuring magentic fields, linear and rotational acceleration and gravity field strength
- Google Patents
Quantum rotor created by trapping single atoms in an optical matrix, and use thereof for measuring magentic fields, linear and rotational acceleration and gravity field strength
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Publication number
IL264115A
IL264115AIL264115AIL26411519AIL264115AIL 264115 AIL264115 AIL 264115AIL 264115 AIL264115 AIL 264115AIL 26411519 AIL26411519 AIL 26411519AIL 264115 AIL264115 AIL 264115A
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Application filed by B G Negev Tech And Applications LtdfiledCriticalB G Negev Tech And Applications Ltd
Priority to IL264115ApriorityCriticalpatent/IL264115A/en
Priority to PCT/IL2020/050012prioritypatent/WO2020141536A1/en
Publication of IL264115ApublicationCriticalpatent/IL264115A/en
IL264115A2019-01-062019-01-06Quantum rotor created by trapping single atoms in an optical matrix, and use thereof for measuring magentic fields, linear and rotational acceleration and gravity field strength
IL264115A
(en)
Quantum rotor created by trapping single atoms in an optical matrix, and use thereof for measuring magentic fields, linear and rotational acceleration and gravity field strength
System and methods for measuring linear and rotational accelerations and magnetic field strengths using individual atoms within an optical lattice formed by lasers
Quantum rotor created by trapping single atoms in an optical matrix, and use thereof for measuring magentic fields, linear and rotational acceleration and gravity field strength
Quantum rotor created by trapping single atoms in an optical matrix, and use thereof for measuring magentic fields, linear and rotational acceleration and gravity field strength
Quantum rotor created by trapping single atoms in an optical matrix, and use thereof for measuring magentic fields, linear and rotational acceleration and gravity field strength
Rare-earth sintered magnet and rare-earth sintered magnet sintered body for use with same, and magnetic field applying device usable for manufacturing same