Estimate a Hamiltonian's ground-state energyVariational quantum eigensolver · 3 parts inside · the Atlas has a full record of thisVariational quantum eigensolver · 3 parts inside · the Atlas has a full record of this — click the line to open it hereQuantum imaginary-time evolutionQuantum imaginary-time evolution — click the line to read about it hereVariational imaginary-time evolution · 2 parts inside · the Atlas has a full record of thisVariational imaginary-time evolution · 2 parts inside · the Atlas has a full record of this — click the line to open it hereGround-state energy by phase estimation · 2 parts inside, open · the Atlas has a full record of thisGround-state energy by phase estimation · 2 parts inside, open · the Atlas has a full record of thisGround-state energy by phase estimation · 2 parts inside, open · the Atlas has a full record of this — click the line to close itSimulate Hamiltonian evolution · 3 ways through · the Atlas has a full record of thisSimulate Hamiltonian evolution · 3 ways through · the Atlas has a full record of this — click the line to open it hereGround-state energy by phase estimationthe method itself — click the name to read about it hereVariational quantum eigensolver · 3 parts inside · the Atlas has a full record of this — click the name to read about it hereVQEQuantum imaginary-time evolution — click the name to read about it hereQITEVariational imaginary-time evolution · 2 parts inside · the Atlas has a full record of this — click the name to read about it hereVariational ITEGround-state energy by phase estimation · 2 parts inside, open · the Atlas has a full record of this — click the name to close itPEA energySimulate Hamiltonian evolution · 3 ways through · the Atlas has a full record of this — click the name to read about it hereSimulate Hamiltonian evolutionGround-state energy by phase estimation — click the name to read about it hereread the energy off the phaseHamiltonian whose ground state is wanted — you start hereNumber with an error bar — you finish hereCircuit for e^{-iHt} — what one part hands to the next

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Where the routes meet

Every circle is drawn once. This step has no smaller object recorded inside it, so the strands between its two circles are the recorded ways of taking it — one strand per method.

All the starting points

4 recorded ways of doing Estimate a Hamiltonian's ground-state energy. Nothing smaller is recorded inside it, so there is no object in the middle to draw.

3 lines have something recorded inside that you have not opened.

Of the routes that have been taken apart, 15 are built entirely from named slots, 15 hand off part of the work and finish the rest themselves, and 20 are one undivided act. None of the three is a defect; they are different things to reuse.

Every line on this figure, in words

The lines on this figure

  1. Variational quantum eigensolveropens into 3 · a way across — click it to open it here
  2. Quantum imaginary-time evolution
  3. Variational imaginary-time evolutionopens into 2 · a way across — click it to open it here
  4. Ground-state energy by phase estimationopen · opened: what was inside is drawn in its place
  5. Simulate Hamiltonian evolutionopens into 3 · a way across — click it to open it here
  • Every line on this figure is one a recorded source takes.

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Where you are

Every step you can open

1 of these have an object recorded in the middle; the rest open into the methods that fill them.

What is on this map, counted

What is here, counted

147 nodes — 31 slots and 116 methods.

76 of the 147 link to a record in the Atlas, between them naming 89 records. The rest name papers and nothing else: this graph describes work the catalogue has not got yet, and the nodes with no record are the list of what a corpus pass has to go and read.

0 slots have no method recorded, and 32 methods have not been taken apart. Both are shown as what they are rather than left blank.

Every claim here rests on a source. This graph cites 140 papers; they and the 172 the Atlas cites alone are registered in one place, with what each reports and everywhere it is cited from. Papers