{
  "id": "ce58db93-b1ae-55a3-968c-06c1445ba09b",
  "slug": "horizontal-spread",
  "term": "Horizontal Spread",
  "aliases": [],
  "category": "Derivatives & Options",
  "category_slug": "derivatives-options",
  "difficulty": "intermediate",
  "definition": "A horizontal spread (also called a calendar spread or time spread) is an options strategy involving the simultaneous purchase and sale of two options on the same underlying asset with the same strike price but different expiration dates. The strategy profits primarily from differences in the rate of time decay (theta) and changes in implied volatility between the near-term and longer-term options.",
  "key_takeaways": [
    "A long calendar spread (long back-month, short front-month) profits when the underlying price stays near the strike price and/or when implied volatility increases.",
    "The maximum profit for a long calendar spread is achieved when the underlying is exactly at the strike price on the front-month expiration date.",
    "The strategy benefits from theta differences: the near-term option decays faster than the back-month option, expanding the spread's value over time if the underlying stays near the strike.",
    "Volatility expansion is particularly beneficial to the long calendar spread because longer-dated options have higher vega and appreciate more than short-dated options when implied volatility rises.",
    "Calendar spreads are capital-efficient relative to outright long options because the premium collected from the short near-term option partially offsets the cost of the long back-month option."
  ],
  "detailed_explanation": "The horizontal spread derives its name from its positioning on the option chain matrix: two options in the same column (same strike) but in different rows (different expiration dates) — a horizontal traversal across maturities. It contrasts with a vertical spread (same expiration, different strikes) and a diagonal spread (different expiration and different strikes). The strategy's profitability is driven by the volatility term structure and the differential decay rates of options across maturities.\n\nThe mechanics of time decay in calendar spreads are fundamentally important. Theta (time decay) is not linear in time to expiration: options in their final weeks decay exponentially faster than longer-dated options. A 30-day at-the-money option loses approximately 33% of its remaining time value in its last two weeks, while a 90-day option loses only about 15% of its value in the same period. By being short the faster-decaying near-term option and long the slower-decaying back-month option, the calendar spread trader harvests the differential theta as a net credit to the position over time, as long as the underlying remains near the strike.\n\nImplied volatility is the second critical driver of calendar spread performance. The relationship between implied volatility and option prices is modulated by the option's vega, which increases with time to expiration. The back-month option has significantly higher vega than the front-month option; thus, when implied volatility rises across the volatility surface, the long back-month option appreciates more than the short front-month option, producing a net gain for the long calendar spread. Conversely, if implied volatility falls, the spread typically loses value. This makes the long calendar spread long vega — a bet on increasing volatility as much as it is a bet on time decay.\n\nFrom a risk management perspective, calendar spreads have a distinctive P&L profile. The position profits in a 'tent-shaped' zone around the strike price as the front month approaches expiration, with maximum profit at-the-money. Large price moves in either direction hurt the position because the short near-term option loses its value advantage relative to the long back-month option. The maximum loss is limited to the net debit paid for the spread (the cost of the back-month option minus proceeds from the front-month option), making calendar spreads defined-risk strategies suitable for traders with a neutral-to-moderately-bullish volatility view who want a low-cost, limited-risk position.",
  "example": "A trader expects Apple (AAPL) to remain near $175 for the next month but anticipates that implied volatility may increase ahead of an earnings announcement scheduled approximately 45 days out. The trader buys the 60-day $175 call for $7.20 and sells the 30-day $175 call for $4.80, establishing a long calendar spread for a net debit of $2.40 per share ($240 per spread). After 30 days, AAPL trades at $176 and the front-month call expires nearly worthless at $0.30. The back-month call (now a 30-day option) is worth $5.80. The spread is now worth $5.80 − $0.30 = $5.50, a gain of $3.10 per share ($310 per spread) on the $240 investment — a 129% return over 30 days, driven by differential theta decay and a modest implied volatility increase of 2 points ahead of earnings.",
  "formula": "Calendar Spread Value = Back-month option value − Front-month option value; Net Debit = C(T₂, K) − C(T₁, K), where T₂ > T₁",
  "formula_latex": null,
  "interactive_type": "calculator",
  "calculator_id": null,
  "related_terms": [
    "at-the-money",
    "calendar-spread",
    "diagonal-spread",
    "greeks",
    "implied-volatility",
    "interest-rate-swap",
    "iron-condor",
    "option",
    "replicating-portfolio",
    "strike-price",
    "theta",
    "time-decay",
    "time-spread",
    "time-value",
    "vega"
  ],
  "backlinks": [
    "back-months",
    "calendar-spread",
    "time-spread"
  ],
  "cross_references": [
    "at-the-money",
    "calendar-spread",
    "diagonal-spread",
    "implied-volatility",
    "option",
    "strike-price",
    "theta",
    "time-decay",
    "time-spread",
    "time-value",
    "vega",
    "vertical-spread",
    "volatility",
    "volatility-surface"
  ],
  "tags": [
    "level:intermediate",
    "cat:derivatives-options"
  ],
  "asset_classes": [
    "derivatives"
  ],
  "regulators": [],
  "see_also": [],
  "sources": [],
  "wordcount": 760,
  "checksum": "cf28acd8ce9e08e2",
  "version": "2026.05.03",
  "license": "CC-BY-4.0",
  "updated_at": "2026-09-07T02:15:24+00:00",
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}