
ChaoticGood
Theoretical Physicist.
Condensed matter theory.
Joined
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139 hr 32 min
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Plan: Understand the algorithm.Result: going wellLiked byisinger
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Plan: write down the algorithm.Result: Reading a thesis, understanding the algorithm. Goes well.Feeling:
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Plan: Read the rest of the paper and write down the algorithm.Result: going well
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Plan: Continue reading on numerical calculation of Berry curvature.Result: Going well, a little more to go!Feeling:Liked byElysium
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Plan: Read on numerical calculation of Berry curvature.Result: It is going well. After reading the next section, an algorithm can be set up.Feeling:Liked byisinger
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Plan: write moreResult: no
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Plan: write moreResult: nothing
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Plan: continue writingResult: k
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Plan: writing.Result: going well
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Plan: Analyse the currensResult: lFeeling:Liked byisinger
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Plan: work the higher order currents out: Boltzmann equation.Result: doneFeeling:
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Plan: codeResult: done
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Plan: Fix just the width of the pulse.Result: Going really wellFeeling:
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Plan: Fix the code!!!Result: nFeeling:
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Plan: Adjust the code for wider pulses, longer time scales and spin resolved currents. Explore the regime with a finite band gap.Result: q
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Plan: Adjust the code for wider pulses, longer time scales and spin resolved currents. Explore the regime with a finite band gap to see the semi-classics.Result: going welllFeeling:
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Plan: Adjust the code for wider pulses, longer time scales and spin resolved currents. Explore the regime with a finite band gap to see the semi-classics.Result: wellFeeling:
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Plan: Adjust the code for wider pulses, longer time scales and spin resolved currents. Explore the regime with a finite band gap to see the semi-classics.Result: going well
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Plan: stat mech prepResult: doneFeeling:Liked byisinger
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Plan: prepareResult: going wellFeeling:
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Plan: Preparation of the exercisesResult: doneFeeling:
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Plan: readResult: Going well
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Plan: more reading.Result: going wellFeeling:Liked byisinger
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Plan: Read more on non linear effectsResult: readingFeeling:
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Plan: Figure out the quadratic time dependenceResult: Will need more numerics.Feeling:Liked byDeterminedAFisinger
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Plan: Write down the interaction picture density matrix and the associated currents.Result: Going wellFeeling:Liked byisinger
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Plan: Preparation for the lectureResult: done
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Plan: Prepare for the lectureResult: Two sections are overFeeling:Liked byisinger
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Plan: Prepare for the lecture Part 1.Result: going wellFeeling:Liked byisinger
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Plan: read bernevig bookResult: yea
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Plan: read bernevig bookResult: going wellLiked byremus
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Plan: Vanderbilt Book- TIsResult: going well
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Plan: Get the slides readyResult: going well
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Plan: Get the plots doneResult: going wellFeeling:Liked byisinger
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Plan: Get the plots doneResult: going wellFeeling:
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Plan: Get the plots ready and add them to the slides.Result: going wellFeeling:
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Plan: read the paper on nonlinear orthogonal currentResult: going wellFeeling:Liked byremus
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Plan: Continue reading the paperResult: readingFeeling:
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Plan: Read the paper. Plot the currents so far.Result: going well
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Plan: Calculate zeroth order currentResult: gLiked byisinger
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Plan: Current analyticsResult: going onLiked byInvarianz
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Plan: Collect the equations and ideas so far and write them down.Result: going wellLiked byInvarianz
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Plan: Analytics current.Result: going wellLiked byInvarianz
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Plan: Analytics current.Result: going wellFeeling:
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Plan: AnalyticsResult: done for the dayFeeling:Liked byisinger
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Plan: working with analytics.Result: wellLiked byQueenBreeze
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Plan: Read the article on how to formulate the quantum mechanical description of current density.Result: going wellFeeling:Liked byInvarianz
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Plan: Analytics current. Read the article on how to formulate the quantum mechanical description of current density.Result: going well
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Plan: Analytics current. Read the article on how to formulate the quantum mechanical description of current density.Result: going well.Feeling:Liked byremus