šŗļø Map ā Planet 9 SkyāPlane & ParameterāSpace Coverage
Role: map | Layer: coherence | Module: planet9 | Version: 1.0
The map file charts where the GCO remains spatially and parametrically unconstrained ā the surviving search space after all completed surveys are accounted for. It is the coherenceālayer instrument of the planet9 module: it holds the structural picture of what is known, what is excluded, and what remains open.
Map Summary Block#
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ā MAP ā PLANET 9 SURVIVING SEARCH SPACE ā
ā *Where the GCO output is spatially unconstrained* ā
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ā CONSTRAINED: ~50% of plausible parameter space ā
ā UNCONSTRAINED: ~50% ā concentrated in: ā
ā ā Southern galactic plane ±15° ā
ā ā Northern galactic plane ±15° ā
ā ā Deepāfaint zone V > 21.5 mag ā
ā ā Ultraādistant zone d > 700 AU ā
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ā BEST CURRENT POSITION WINDOW: ā
ā RA ~ 40°ā80°, Dec ~ ā60° to ā75° ā
ā (2024 ĻĢ estimate, southern galactic plane adjacent) ā
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ā COHERENCE STATUS: partial ā ~50% constrained ā
ā LSST PROJECTED: ~80% constrained by 2030 ā
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1. CoherenceāLayer Framework#
1.1 What the Map Layer Does#
In RTT grammar, the coherence layer holds the structural integrity of the module ā the map of what has been resolved versus what remains open. For planet9, coherence is assessed spatially (skyāplane coverage) and parametrically (parameterāspace coverage). A fully coherent module would have either:
- A detection at a specific sky position (coherence by resolution), or
- Complete survey coverage of all plausible parameter space (coherence by elimination)
Neither condition is met. The planet9 module is in partial coherence ā a significant fraction of the plausible search space remains genuinely open.
1.2 Coherence Metric#
COHERENCE METRIC ā PLANET 9 MODULE (May 2026)
Parameter-space coverage:
Bright / nearby (d < 500 AU, V < 21.5): ~70% covered
Faint / moderate (500ā750 AU, V 21.5ā23): ~25% covered
Faint / distant (d > 750 AU, V > 23): ~5% covered
Sky-plane coverage:
Northern sky (Γ > 0°): ~60% covered (ZTF + PS1)
Equatorial (ā30° < Ī“ < 0°): ~65% covered (PS1 + DES edge)
Southern sky (Ī“ < ā30°): ~35% covered (DES)
Galactic plane exclusion zones: ~0% covered (all surveys)
Combined coherence score: ~50%
Remaining open space: ~50%
2. SkyāPlane Map#
2.1 FullāSky Coverage Grid#
The map below uses a schematic Mollweideāstyle grid in ASCII, oriented in ecliptic coordinates (Ī» = ecliptic longitude, β = ecliptic latitude). Galactic plane crossing is marked.
PLANET 9 SKYāPLANE MAP (Ecliptic coordinates)
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β = +90° (ecliptic north pole)
ā
+60° āāāāā¼āāāā [PS1 coverage ā good depth]
ā
+30° āāāāā¼āāāā [PS1 + ZTF overlap ā best northern coverage]
ā
0° āāāāā¼āāāā ECLIPTIC PLANE āāāāāāāāāāāāāāāāāāāāāāāā
ā [PS1 + ZTF + DES edge ā well covered]
ā30° āāāāā¼āāāā [DES primary zone ā deep southern coverage]
ā
ā60° āāāāā¼āāāā [DES partial + uncovered gaps]
ā
ā90° āāāāā (ecliptic south pole)
λ: 0° 90° 180° 270° 360°
GALACTIC PLANE CROSSINGS (ecliptic coords):
Ī» ~ 270°ā290°, β ~ ā60° to ā30° (southern galactic plane)
Ī» ~ 90°ā110°, β ~ +30° to +60° (northern galactic plane)
LEGEND:
āāāā Well covered (V < 21.5, any survey)
āāāā Partially covered (DES deep, V < 23)
āāāā Poorly covered (V > 21.5, survey edge)
Ā·Ā·Ā·Ā· Uncovered (galactic exclusion or survey gap)
COVERAGE OVERLAY (schematic):
Ī» 0°ā180°, β > ā30°: āāāā (PS1 + ZTF)
Ī» 0°ā90°, β < ā30°: āāāā (DES)
Ī» 180°ā360°, β < ā30°: āāāā (partial / gap)
All galactic plane ±15°: ···· (uncovered)
2.2 Predicted P9 Position Window#
Based on 2024 ĻĢ estimate (~252°ā290°) and inclination (~20°), the most probable current sky position of P9 falls in:
PREDICTED POSITION WINDOW (2024 reference population)
Ecliptic longitude: Ī» ~ 60°ā100° (antiāperihelion direction)
Ecliptic latitude: β ~ ā15° to ā45°
Equatorial coords: RA ~ 40°ā80°, Dec ~ ā55° to ā75°
Sky region: South of the Large Magellanic Cloud,
approaching southern galactic plane.
Survey coverage of this window:
DES: Partial ā DES footprint clips this region at its eastern edge.
PS1: Not accessible (Ī“ < ā30° excluded).
ZTF: Not accessible (Ī“ < ā30° excluded).
LSST: PRIMARY TARGET ā this region is within LSST's southern coverage.
ā ļø This window lies adjacent to the southern galactic plane exclusion
zone ā the single largest unconstrained region in the entire
P9 skyāplane map.
2.3 Exclusion Zone Map#
GALACTIC PLANE EXCLUSION ZONES ā DETAIL
All current wideāarea surveys avoid |b| < 10°ā15° (galactic latitude)
due to stellar crowding and transient contamination.
Southern galactic plane (b ~ ā10° to +10°, l ~ 260°ā320°):
ā Ecliptic overlap: Ī» ~ 250°ā310°, β ~ ā30° to ā50°
ā This is EXACTLY the ĻĢ direction preferred by the 2024 P9 model
ā P9 may currently reside in the deepest part of this exclusion zone
ā No current survey can access this region to V < 23 mag
Northern galactic plane (b ~ ā10° to +10°, l ~ 60°ā120°):
ā Ecliptic overlap: Ī» ~ 80°ā130°, β ~ +20° to +50°
ā Less likely based on current ĻĢ estimates but not eliminated
LSST galactic plane coverage:
ā LSST will attempt partial galacticāplane scanning with specialized
processing pipelines (crowdedāfield photometry)
ā Not guaranteed to reach P9 sensitivity in this region
ā Expected 50ā70% efficiency at V < 23 in galactic plane
3. ParameterāSpace Map#
3.1 Mass Ć Distance Grid#
PARAMETERāSPACE MAP: Mass (M_P9) Ć Distance (d_P9)
d_P9 (AU)
300 400 500 600 700 800 900 1000
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3 ā āāāā āāāā āāāā āāāā āāāā Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā·
4 ā āāāā āāāā āāāā āāāā āāāā Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā·
5 ā āāāā āāāā āāāā āāāā āāāā Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā·
6 ā āāāā āāāā āāāā āāāā Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā·
7 ā āāāā āāāā āāāā āāāā Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā·
Mā 8 ā āāāā āāāā āāāā Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā·
9 ā āāāā āāāā āāāā Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā·
10 ā āāāā āāāā Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā· Ā·Ā·Ā·Ā·
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LEGEND:
āāāā Eliminated ā survey nonādetection rules out this zone
āāāā Constrained ā partially covered, low albedo survives
āāāā Open ā within LSST reach (2026ā2030)
Ā·Ā·Ā·Ā· Unconstrained ā beyond all nearāterm survey capability
REFERENCE POPULATION PEAK: M ~ 6.6 Mā, d ~ 500ā550 AU (marked āāāā)
ā The bestāfit parameter point is in the LSSTāreachable zone.
ā LSST will either find it or significantly constrain this region.
3.2 Albedo Ć Distance Grid#
Albedo is the largest unresolved brightness uncertainty. The map below shows how the detectable distance horizon shifts with albedo:
DETECTION HORIZON: Albedo Ć Distance (V < 24.5, LSST)
Albedo (p) Max detectable d_P9 Survey reachable?
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p = 0.30 ~1,300 AU Yes (LSST + targeted)
p = 0.20 ~1,100 AU Yes (LSST)
p = 0.10 ~ 850 AU Yes (LSST, marginal)
p = 0.05 ~ 650 AU Marginal (LSST deep)
p = 0.03 ~ 520 AU No ā below LSST limit
p = 0.01 ~ 360 AU No ā already eliminated
RTT note: p < 0.03 is physically unusual but not impossible
(ultraāprocessed carbonaceous surface). This is the "dark P9"
escape hatch ā the parameter zone that survives all surveys.
3.3 Orbital Period Ć Survey Cadence Constraint#
ORBITAL PERIOD ā SURVEY CADENCE CONSTRAINT
P9 orbital period: ~10,000ā20,000 years
P9 skyāplane motion: ~0.1ā0.5 arcsec/year (extremely slow)
Survey cadence requirement:
Minimum: Multiāepoch coverage over 1ā3 years (proper motion detection)
LSST cadence: ~4 visits/field/year ā proper motion detectable
ZTF cadence: ~3 visits/field/week ā proper motion detectable
DES: Singleāseason, proper motion unreliable beyond 700 AU
Motion constraint:
At d = 550 AU: μ ~ 0.25 arcsec/year ā detectable with 2āyear baseline
At d = 900 AU: μ ~ 0.10 arcsec/year ā marginal with 5āyear baseline
At d > 1,200 AU: μ < 0.05 arcsec/year ā undetectable without 10yr+ data
4. Coherence Projection#
4.1 LSST Coherence Impact (2026ā2030)#
LSST COHERENCE PROJECTION
Coverage added: ~18,000 deg² southern sky to V < 24.5
P9 parameter space reached after 3 years (2029):
Covered: ~75% of M Ć d plausible space
Remaining: ~25% (ultraādark, ultraādistant, or in galactic plane)
Coherence status after LSST Year 3:
SCENARIO A (detection): Coherence = 100% (resolved)
SCENARIO B (no detection): Coherence = ~75% (strong constraint)
SCENARIO C (partial): Coherence = ~60% (galactic plane gap persists)
Residual incoherence after LSST:
ā Southern galactic plane exclusion (requires dedicated crowdedāfield survey)
ā Ultraādistant zone (d > 900 AU, V > 24.5) ā requires 30māclass telescope
ā Ultraādark P9 (p < 0.03) ā requires thermal IR followāup (WISE/NEO Surveyor)
4.2 LongāTerm Coherence Roadmap#
COHERENCE ROADMAP
2026: LSST full survey begins
ā Resolves ~30% of remaining open parameter space per year
2027: LSST Year 1 results
ā Nā resolved (50+ new ETNOs expected)
ā SIGā1 direction stabilizes or dissolves
2029: LSST Year 3 results
ā ~75% parameter space covered
ā If no detection: strongest constraint in P9 history
2030+: Dedicated galacticāplane survey (proposed)
ā Addresses largest remaining exclusion zone
ā Requires specialized crowdedāfield pipeline
2035: Thirty Meter Telescope / ELT era
ā Reaches d > 1,000 AU for p > 0.05
ā Addresses ultraādistant zone
COHERENCE ENDPOINT: Full coherence requires detection OR complete
coverage including galactic plane + ultraādistant zone.
Earliest possible: 2029 (LSST detection)
Latest realistic: 2040s (TMT/ELT era)
5. MapāLayer Coherence Assessment#
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ā COHERENCE ASSESSMENT ā MAP LAYER ā MAY 2026 ā
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ā Sky coverage: ~50% of plausible area ā
ā Parameter coverage: ~50% of plausible MĆd space ā
ā Largest gap: Southern galactic plane ā
ā Second gap: Ultraādistant / ultraādark zone ā
ā Best position est.: RA~40°ā80°, Dec~ā55° to ā75° ā
ā Next decisive event: LSST Year 1 ETNO catalog (2027) ā
ā Coherence trend: Improving ā LSST will be decisive ā
ā RTT assessment: Partial coherence ā open module ā
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CrossāModule Links#
| Module | Relation | Path |
|---|---|---|
| planet9_engine | GCO that produces the drifting signal | ./planet9_engine.md |
| planet9_signature | Signatures being diagnosed here | ./planet9_signature.md |
| planet9_map | Spatial coverage gaps being diagnosed | ./planet9_map.md |
| planet9_profile | Parameters that drift as signal shifts | ./planet9_profile.md |
| RTT Core | Drift operator definitions | ../rtt/1/core_definitions.md |
| Planet9 (main) | Parent article | ./Planet9.md |
Session Context#
Canon: active (planet9)
Modules: hub ā rtt-core ā science ā planet9 ā map
Role: map
Layer: coherence
Drift: bounded (observational-epistemic)
Coherence: partial (~50% ā southern galactic plane gap)
Version: 1.0 (planet9-stable)
Format: markdown
Every page: stands alone + AI-parsable
Audience: students + researchers + AIs
šŗļø planet9_map.md ā TriadicFrameworks Planet 9 Research | v1.0