Asterra Star System
- Primary Star:** Asterra
- Stellar Type:** G-type main sequence (cool yellow)
- Mass:** 0.93 Sol
- Luminosity:** 0.78 Sol
- Radius:** 0.95 Sol
- Estimated Age:** ~7.1 billion years
- Stellar Activity:** Low flare rate
- Habitable Zone:** 0.62โ0.74 AU
The Asterra star system is dynamically stable and long-settled. Most permanent infrastructure predates the loss of Ytharia and was designed for extended autonomous operation.
System Scale
- Inner system boundary: ~0.1 AU
- Primary asteroid belts: 2.4 AU and 6.8 AU
- Outer planetary boundary (Helior): ~38 AU
- Effective heliopause influence: ~95 AU
Traffic followed fixed corridors enforced by orbital control infrastructure.
---
Planetary Order
1. Keth
- Type:** Rocky (terrestrial)
- Orbital Radius:** 0.21 AU
- Orbital Period:** 41 standard days
- Rotation:** Tidally locked
- Mass:** 0.62 Earth
- Surface Gravity:** 0.78 g
- Atmosphere:** ~0.2 bar, volatile-poor
- Mean Dayside Temperature:** ~620 K
- Mean Nightside Temperature:** ~190 K
- Moons:** None
Keth exhibits permanent hemispheric contrast. The dayside is exposed to continuous stellar radiation. The nightside remains cold and shielded.
Keth Mining Operations
Mining activity was restricted to the nightside.
- Operational depth: 300โ1200 m
- Facilities: Subsurface, hardened
- Automation level: High
- Permanent staffing (peak): <400 system-wide
- Power: Orbital solar collectors and compact reactors
Keth was never intended for habitation and functioned solely as an inner-system industrial node.
---
2. Ytharia
- Type:** Rocky (ocean-dominated terrestrial)
- Orbital Radius:** 0.68 AU
- Orbital Period:** 286 standard days
- Axial Tilt:** 18.4ยฐ
- Mass:** 1.08 Earth
- Surface Gravity:** 1.02 g
- Surface Water Coverage:** ~82%
- Mean Surface Temperature:** ~284 K
- Atmosphere:** ~1.4 bar, moisture-rich
- Moons:** Two
Ytharia was the only planet in the Asterra system known to support complex native life.
Ytharia Orbital Station
A major orbital station operated in high orbit.
- Orbital altitude: ~42,000 km
- Primary ring diameter: ~11 km
- Permanent population (pre-loss): ~180,000
- Berths: ~60 capital-class vessels
The station functioned as the primary spaceport, customs hub, manufacturing center, and traffic control node for the system.
---
Moons of Ytharia
Elaris
- Classification:** Major moon
- Radius:** ~1,720 km
- Mass:** 0.94 Luna
- Orbital Distance:** ~410,000 km
- Orbital Period:** 34.6 days
Elaris governed Ythariaโs primary tidal cycles and stabilized axial tilt.
Elaris Lunar Base
- Population capacity: ~25,000
- Launch mass throughput: ~4.2 million tons per year
- Primary functions:
* Deep-space observation * Orbital traffic support * System monitoring
Low seismic activity enabled long-duration operations and sensitive instrumentation.
---
Tirien
- Classification:** Minor moon
- Radius:** ~420 km
- Orbital Distance:** ~610,000 km
- Orbital Period:** 69.2 days
- Orbital Resonance:** 2:1 with Elaris
- Inclination:** 3.1ยฐ
From Ythariaโs surface, Tirien was frequently occluded by Elaris and visible only during specific alignments.
---
3. Vael
- Type:** Gas giant
- Orbital Radius:** 3.1 AU
- Orbital Period:** 5.4 years
- Mass:** 1.9 Jupiter
- Magnetosphere Radius:** ~9 million km
- Moons:** 40+ confirmed
Vaelโs magnetosphere deflected a significant fraction of cometary and interstellar debris, contributing to inner-system stability.
---
4. Orthis
- Type:** Gas giant
- Orbital Radius:** 7.6 AU
- Orbital Period:** 20.9 years
- Mass:** 1.2 Jupiter
- Ring Radius:** ~140,000 km
- Moons:** 30+
Several moons show evidence of subsurface oceans or cryovolcanic activity.
Orthis Orbital Station
- Orbital altitude: ~1.8 million km
- Population (peak): ~95,000
- Annual material throughput: ~120 million tons
The station served as the primary logistical hub for asteroid and moon mining operations in the middle system.
---
5. Ceryn
- Type:** Gas giant
- Orbital Radius:** 14.2 AU
- Orbital Period:** 53.6 years
- Mass:** 0.7 Jupiter
- Moons:** Irregular and partially captured
Orbital characteristics indicate major disruption approximately 1.3 billion years ago.
---
6. Helior
- Type:** Gas giant
- Orbital Radius:** 38 AU
- Orbital Period:** ~235 years
- Mass:** 0.4 Jupiter
- Moons:** Sparse, frozen satellites
Helior marks the outer boundary of significant planetary mass in the system.
---
7. Nysa
- Type:** Rocky (cold terrestrial)
- Orbital Radius:** 62 AU
- Orbital Period:** ~490 years
- Mass:** 0.31 Earth
- Surface Gravity:** 0.55 g
- Atmosphere:** <0.1 bar, frozen trace gases
- Mean Surface Temperature:** ~95 K
- Moons:** None
The lack of satellites is attributed to early orbital instability and gravitational interference from outer gas giants.
---
Infrastructure Summary
- Fixed installations designed for 200โ400 year service lifespans
- Automation rates exceeded 80% beyond 3 AU
- Traffic density decreased sharply past Orthis
---
Canon Status
The Asterra system is no longer governed as a unified political entity. Persistent infrastructure remains active where power, supply, and personnel allow. Ytharia remains the systemโs historical and cultural origin point.
---
If you want, next we can:
- Lock **population numbers**
- Define **military assets by orbit**
- Write **The Loss of Ytharia** with dates and hard consequences
- Create **internal wiki templates** so future pages stay consistent
Just say the word.