auto: hourly snapshot 2026-06-04 15:34
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#!/bin/bash
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# Atomic Emission Spectra Test
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# Check if lattice mode energy ratios match hydrogen Balmer/Lyman series
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# Run at low power (already established)
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ZMQ_PORT=5557
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API_PORT=28820
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echo "======================================"
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echo "ATOMIC EMISSION SPECTRA TEST"
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echo "Hydrogen Balmer/Lyman Series Check"
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echo "======================================"
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echo "Low power mode: Khra 0.01, Omega 6.00"
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echo ""
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# Function to send ZMQ command
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send_cmd() {
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python3 -c "
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import zmq
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import json
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ctx = zmq.Context()
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sock = ctx.socket(zmq.PUSH)
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sock.setsockopt(zmq.SNDTIMEO, 5000)
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sock.setsockopt(zmq.LINGER, 0)
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sock.connect('tcp://127.0.0.1:$ZMQ_PORT')
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sock.send_string(json.dumps({'cmd': '$1', 'value': $2}))
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" 2>/dev/null
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}
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# Function to get telemetry
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get_telemetry() {
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curl -s http://127.0.0.1:$API_PORT/telemetry 2>/dev/null | python3 -c "
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import sys, json
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try:
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d = json.load(sys.stdin)
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print(f\"{d['coherence']:.6f} {d['asymmetry']:.6f} {d['omega']} {d.get('khra_amp', 0)} {d.get('gixx_amp', 0)}\")
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except:
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print('ERROR')
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"
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}
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# Hydrogen energy levels: E_n = -13.6/n² eV
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# Transitions: ΔE = 13.6(1/n₁² - 1/n₂²)
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# Ratios we look for:
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# Lyman-α (2→1): ΔE = 10.2 eV, ratio = 3/4 = 0.75
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# Balmer-α (3→2): ΔE = 1.89 eV, ratio = 5/36 = 0.139
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# Paschen-α (4→3): ΔE = 0.66 eV, ratio = 7/144 = 0.0486
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echo "Hydrogen Transition Energy Ratios:"
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echo " Lyman-α (2→1): 3/4 = 0.7500"
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echo " Balmer-α (3→2): 5/36 = 0.1389"
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echo " Paschen-α (4→3):7/144 = 0.0486"
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echo ""
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# Sweep omega (energy proxy) and measure coherence response
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echo "Sweeping omega (energy proxy)..."
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echo "--------------------------------"
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omega_values=(6.0 5.5 5.0 4.5 4.0 3.5 3.0 2.5 2.0)
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results=()
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for omega in "${omega_values[@]}"; do
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send_cmd "set_omega" "$omega"
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sleep 3
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tel=$(get_telemetry)
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if [ "$tel" != "ERROR" ]; then
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coh=$(echo $tel | cut -d' ' -f1)
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asym=$(echo $tel | cut -d' ' -f2)
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echo " Omega $omega: Coh=$coh, Asym=$asym"
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results+=("$omega $coh $asym")
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fi
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done
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echo ""
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echo "Analyzing energy ratios..."
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echo "--------------------------"
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# Calculate coherence differences (energy analog)
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# Check if ratios match hydrogen transitions
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if [ ${#results[@]} -ge 3 ]; then
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# Get first, middle, last for ratio check
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first=(${results[0]})
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mid=(${results[${#results[@]}/2]})
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last=(${results[-1]})
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coh1=${first[1]}
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coh2=${mid[1]}
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coh3=${last[1]}
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# Calculate ratios
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ratio1=$(echo "scale=6; $coh2 / $coh1" | bc 2>/dev/null || echo "N/A")
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ratio2=$(echo "scale=6; $coh3 / $coh2" | bc 2>/dev/null || echo "N/A")
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echo " Coherence ratio (mid/first): $ratio1"
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echo " Coherence ratio (last/mid): $ratio2"
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echo ""
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# Compare to hydrogen
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echo "Comparison to hydrogen:"
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echo " Lyman-α target: 0.7500"
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echo " Balmer-α target: 0.1389"
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echo ""
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# Check if any ratio matches
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if [ "$ratio1" != "N/A" ]; then
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diff_lyman=$(echo "scale=6; $ratio1 - 0.75" | bc | tr -d '-')
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diff_balmer=$(echo "scale=6; $ratio1 - 0.1389" | bc | tr -d '-')
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if (( $(echo "$diff_lyman < 0.1" | bc -l) )); then
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echo " ✓ MATCH: Ratio $ratio1 ≈ Lyman-α (diff: $diff_lyman)"
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elif (( $(echo "$diff_balmer < 0.05" | bc -l) )); then
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echo " ✓ MATCH: Ratio $ratio1 ≈ Balmer-α (diff: $diff_balmer)"
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else
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echo " ✗ No match to hydrogen series"
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fi
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fi
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fi
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echo ""
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echo "======================================"
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echo "TEST COMPLETE"
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echo "======================================"
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echo ""
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echo "Interpretation:"
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echo " If coherence ratios match hydrogen energy ratios,"
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echo " the lattice quantizes energy like an atom."
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echo ""
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echo " Current finding: Coherence changes with omega,"
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echo " but direct hydrogen correlation requires further analysis."
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# Return to safe low power
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send_cmd "set_omega" "6.00"
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