{
  "resonance": [
    {
      "delta": 0.01,
      "direct_gain": 118.16378410185621,
      "rank_one_law": 118.16378410180907,
      "relative_residual": 3.9901415505028126e-13
    },
    {
      "delta": 0.03,
      "direct_gain": 39.710353309746594,
      "rank_one_law": 39.710353309741585,
      "relative_residual": 1.2612133559741778e-13
    },
    {
      "delta": 0.1,
      "direct_gain": 12.251652532518472,
      "rank_one_law": 12.25165253251796,
      "relative_residual": 4.1744385725905886e-14
    },
    {
      "delta": 0.3,
      "direct_gain": 4.406309453311276,
      "rank_one_law": 4.406309453311209,
      "relative_residual": 1.509903313490213e-14
    },
    {
      "delta": 1.0,
      "direct_gain": 1.6604393755888527,
      "rank_one_law": 1.660439375588847,
      "relative_residual": 3.552713678800501e-15
    }
  ],
  "nominal_pulses": [
    {
      "r": "13/10",
      "D1_terminal": 23.005640526492517,
      "scope": "Nominal numerical pulse only; no preparation/actuator uncertainty enclosure."
    },
    {
      "r": "3/2",
      "D1_terminal": 23.00612081651333,
      "scope": "Nominal numerical pulse only; no preparation/actuator uncertainty enclosure."
    }
  ],
  "scope": "The resonance law is exact for the linearized response at the certified frequency. Finite forcing, measurement error and experiment feasibility require separate analysis."
}
