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SP425

SP425. Quantum Mechanics II with Advanced Laboratory II. QM Courses. SP327 Modern relativity old quantum theory QM overview SP324 Quantum I with Advanced Lab I QM formalism with strange math SP425 Quantum II with Advanced Lab II What do you do if ... ? (aka perturbation theory)

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SP425

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  1. SP425 Quantum Mechanics II with Advanced Laboratory II

  2. QM Courses • SP327 Modern • relativity • old quantum theory • QM overview • SP324 Quantum I with Advanced Lab I • QM formalism with strange math • SP425 Quantum II with Advanced Lab II • What do you do if ... ? (aka perturbation theory) • QM Applications survey • Hydrogen atom • multielectron atoms • molecules • nuclear • solid state • elementary particles • quantum statistics

  3. Recommended Resources • Eisberg & Resnick • std junior year physics book, but... • http://hyperphysics.phy-astr.gsu.edu/hbase/quacon.html#quacon • ...do some surfing.... • Griffiths “Intro to QM” • available in lab • Melissinos “Experiments in Mod Phys” • available in lab

  4. SP425 Short Syllabus • Uncertainty Analysis • SP324 Review • Perturbation Theory – how to correct oversimplified calcs • Time-dep Perturb Theory – how to calculate decay rates • Corrections to the simplified hydrogen atom from last semester • Multi-electron Atoms • Molecules • Quantum Statistics (preview to SP444: Stat Mech) • Nuclear • Solid State / Condensed Matter / Superconductivity / SQUIDS • Elementary Particles • Relativisitic Quantum Mechanics: Dirac Equation

  5. SP425 Lab Emphasis • Use real equipment, do your own thing • Do your own background reading • Technical writing for physics (satisfies USNA capstone requirement)

  6. FIND AVAILABLE DOCUMENTATION sheets & manuals, Melissinos suggestion sheets SP324 FIND PARTS FIGURE OUT WHAT TO DO SP425 ASSEMBLE TAKE PRELIM DATA and do quick analysis to verify correct assembly & parts working YOU FOUND IT, YOU FIX IT* Good to Go ? TAKE GOOD DATA and analyze MAKE ADJUSTMENTS How can results be improved? FINAL ANALYSIS WRITE REPORT *If it’s broken, inform JeffV

  7. Ocean Optics Spectrometers ~ 2 nm Typical line spectrum Absorption of solar radiation

  8. Jarrell-Ash ½ meter • Hydrogen/deuterium reduced mass • Fine structure energy splittings in Na & Hg ~10-4 eV

  9. Jarrell-Ash 1 meter • Hydrogen/deuterium reduced mass • Fine structure energy splittings in Na & Hg ~10-4 eV

  10. Telatomic ESR & PSR • Measure electron gs • Measure proton gs

  11. Leybold-Didactic ESR • Measure electron gs • Examine the ‘medium’ effects upon the electron gs

  12. Telatomic Pulsed NMR g-factor is used to determine the environment of the electron in various materials

  13. TeachSpin Optical Pumpingin Rb How magnetic fields affect the energies of states with mj ml ms Especially the selectivity of transitions

  14. High-Temp Superconductivity Study the superconducting transition and compare yittrium & bismuth compounds. Measure superconducting currents & B-fields

  15. NanoScience Scanning Tunneling Electron Microscope Take pictures of individual atoms and defects on surfaces.

  16. Extremely High Resolution Ocean Optics Spectrometer ~0.003 nm Observe fine structure splittings in Hydrogen & Deuterium (I hope)

  17. Accelerator Measuring the inner electron orbits of atoms and how that information can be used for composition determinations.

  18. Jarrell-Ash 2 meter • Fine Structure in Deuterium • Zeeman Effect in isotopic Hg

  19. Leybold-Didactic Zeeman Effect in Cd How magnetic fields affect the energies of states with mj ml ms

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